Basic Pharmacognosy – Complete Full Notes
| |
UNITED REPUBLIC OF TANZANIA
Ministry of Health, Community Development, Gender, Elderly and Children
Facilitator Guide
Copyright © Ministry of Health, Community Development, Gender, Elderly and
Children – 20
Table of Contents
Background iii
Acknowledgment iv
Introduction vi
Abbreviations/Acronym viii
Session 1: Introduction to Pharmacognosy 1
Session 2: The Plant Cell 7
Session 3: Plant Tissues 14
Session 4: Plant Tissue Systems 23
Session 5: Morphology of the Roots 28
Session 6: Morphology of Stems 36
Session 7: Morphology of the Leaf 44
Session 8: Morphology of the Flower 52
Session 9: Morphology of the Fruit 58
Session 10: Morphology of the Seed 64
Session 11: Pharmaceutical Barks 69
Session 12: Cultivation of medicinal plants 74
Session 13: Collection, Processing and Storage of Medicinal Plants 83
Session 14: Extraction of Active Medicinal Principals from Natural Sources
90
Session 15: Adulteration of Medicinal Plants 97
Session 16: Introduction to Ergastic Substances 102
Session 17: Gum, Mucilage and Pectins 109
Session 18: Introduction to Alkaloids 115
Session 19: Classification, Uses and Extraction of Alkaloids 120
Session 20: Tropane Alkaloids 127
Session 21: Lobelia and Tobacco 133
Session 22: Quinoline Alkaloids 137
Session 23: Isoquinoline Alkaloids 141
Session 24: Indole and Imidazole Alkaloids 146
Session 25: Purine Alkaloids 153
Session 26: Proto alkaloids 158
Session 27: Introduction of Glycosides 162
Session 28: Cardiac Glycosides 166
Session 29: Anthraquinone Glycosides 172
Session 30: Introduction to Volatile Oils and Resins 177
Session 31: Alcoholic and Hydrocarbon Volatile Oils 183
Session 32: Ketonic and Aldehydic Volatile Oils 188
Session 33: Phenolic ether, Phenolic, Oxide and Ester Volatile Oils 194
Session 34: Introduction to Fixed oils and Fats 200
Session 35: Castor, Olive, Cod-liver and Peanut Oils 205
Session 36: Almond, Linseed, Coconut and Cottonseed Oils 210
Session 37: Fats 215
Session 38: Waxes 219
Background
There is currently an ever-increasing demand for pharmaceutical personnel
in Tanzania. This is due to expanding investment in public and private
pharmaceutical sector. Shortage of trained pharmaceutical human resource
contributes to poor quality of pharmaceutical services and low access to
medicines in the country (GIZ, 2012).
Through Public-Private-Partnership (PPP) the Pharmacy Council (PC) together
with Development Partners (DPs) in Germany and Pharmaceutical Training
Institutions (PTIs) worked together to address the shortage of human
resource for pharmacy by designing a project named “Supporting Training
Institutions for Improved Pharmaceutical Services in Tanzania” in order to
improve quality and capacity of PTIs in training, particularly of lower
cadre pharmaceutical personnel.
The Pharmacy Council formed a Steering committee that conducted a
stakeholder’s workshop from18th – 22ndAugust 2014 in Morogoro to initiate
the implementation of the project.
Key activities in the implementation of this project included carrying out
situational analysis, curriculum review and harmonization, development of
training manual/facilitators guide, development of assessment plan,
training of trainers and supportive supervision.
After the curricula were reviewed and harmonized, the process of developing
standardised training materials started through Writer’s Workshop approach.
The approach included a number of workshops for developing, reviewing,
editing and formatting the sessions of the modules.
The goals of writer’s workshops were to build capacity of tutors in the
development of training materials and to develop high-quality, standardized
teaching materials.
The training package for pharmacy cadres includes a facilitator guide,
assessment plan and practicum. There are 11 modules for NTA level 5 making
11 facilitator guides including one practicum guide.
Acknowledgment
The development of standardized training materials of a competence-based
curriculum for pharmaceutical sciences has been accomplished through
involvement of different stakeholders.
Special thanks go to the Pharmacy Council for spearheading the
harmonization of training materials in the pharmacy after noticing that
training institutions in Tanzania were using different curricula and train
their students differently.
I would also like to extend my gratitude to Christian Social Service
Commission (CSSC) for their tireless efforts to mobilize funds from
development partners (German Ministry of Industry and action medeor). It
is through the implementation of the Multi-Actors Partnership (MAP)
project, CSSC has been able to provide the financial and technical
support needed during the development of this training material.
Many thanks go to the Centre for Educational Development in Health Arusha
(CEDHA) experts on health material development and training who coordinated
the development of these module sessions particularly Ms. Diana H. Gamuya
for her commitment in coordinating and facilitating the planning and
development to its completion.
Particular acknowledgements are sent to Mr. Dickson Mtalitinya and Members
from the secretariat of National Council for Technical Education (NACTE)
for facilitating and providing their expertise to the success of this work.
It will be unfair if I will not recognize the efforts and contributions of
all CEDHA supportive staff that made this process a success; accountant,
secretary, drivers and printers
Finally, I very much appreciate the contributions of the tutors and content
experts representing PTIs, hospitals, and other health training
institutions. Their participation in meetings and workshops, and their
input in the development of this training manual/facilitators guide have
been invaluable.
These participants are listed with our gratitude below:
Ms. Elizabeth Shekalaghe Registrar, Pharmacy Council of
Tanzania
Health,MoHCDGEC
Dr. Catherine Jincen Acting Principal, CEDHA
Dr. Sungwa N. Kabissi Project Manager – MAP,
CSSC
Ms. Diana H. Gamuya CEDHA
Ms. Grace Mallange PC
Ms. Emily Mwakibolwa Pharmacy Council
Ms. Tumaini H. Lyombe MUHAS
Ms. Dilisi J. Makawia KSP
Director of Human Resources Development
Ministry of Health, Community Development, Gender, Elderly and Children
Introduction
Module Overview
This module content is a guide for tutors of Pharmaceutical schools for
training of students. The session contents are based on sub-enabling
outcomes and their related tasks of the curriculum for Technician Course in
Pharmaceutical Sciences. The module sub-enabling outcomes and their related
tasks are as indicated in the in the Technician Certificate in
Pharmaceutical Sciences (NTA Level 5) Curriculum
Target Audience
This module is intended for use primarily by tutors of pharmaceutical
schools. The module’s sessions give guidance on the time, activities and
provide information on how to teach the session. The sessions include
different activities, which focus on increasing students’ knowledge, skills
and attitudes.
Organization of the Module
The module consists of thirty eight (38) sessions; each session is divided
into several parts as indicated below:
indicated in minutes
teaching the session.
learn by the end of the session
including handouts and worksheets
step, the activity or method used in each step and the step title
step has a heading and an estimated time to teach that step as shown in
the overview box. Also, this section includes instructions for the tutor
and activities with their instructions to be done during teaching of the
contents
of a session This step summarizes the main points and ideas from the
session, based on the learning tasks of the session
based on the learning tasks to check the understanding of students.
while teaching or later for students’, further learning. Handouts are
used to provide extra information related to the session topic that
cannot fit into the session time. The students to study material on their
own and to refer to them after the session can use handouts. Sometimes, a
handout will have questions or an exercise for the participants including
the answers to the questions.
Instructions for Use and Facilitators Preparation
classroom and skills laboratory
dispensing.
handouts and worksheets as preparation before facilitating the session
section or any other item, for an effective teaching and learning process
learning process effective
contents in order to clarify points during facilitation
much as possible, and adjust as needed
involved, they learn more effectively
more realistic
available locally
Preparation with Handouts and Worksheets
the session
teaching the session. This will enable students to refer to handouts and
worksheets during the session in the class. You can reproduce enough
copies for students or for sharing
the students to follow the instructions of the activity
in the facilitator guide
Using Students Manual When Teaching
facilitator guide, which excludes facilitator instructions and answers
for exercises.
acts as a reference document during and after teaching the session
manual without facilitator instructions
Abbreviations/Acronym
CBET Competency Based Education Training
CBL Competency Based Learning
CEDHA Centre for Educational Development in Health Arusha
CSSC Christian Social Services Commission
CUHAS Catholic University of Health and Allied Sciences
DTLC District TB and Leprosy Coordinator
GDF Global Drugs Facility
GPA Grades per Annum
HTI Health Training Institution
KSP Kilimanjaro School of Pharmacy
MAP Multi-Actor Partnership
MOHCDGEC Ministry of Health Community Development Gender Elderly and
MSD Medical store department
MSD Medical Store Department
NACTE National Council for Technical Education
NTA National Technical Awards
NTLP National Tuberculosis and Leprosy Program
PC Pharmacy Council
PTI Pharmaceutical Training Institution
RAS Regional Administrative Secretary
RTLC Regional TB and Leprosy Coordinator
RUCU Ruaha Catholic University
SIBS Springs Institute of Business and Sciences
Session 1: Introduction to Pharmacognosy
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 |Presentation |Introduction, Learning Tasks |
| |minutes | | |
|2 |15 |Presentation |Definition and Meaning of |
| |minutes | |Pharmacognosy |
|3 |20 |Presentation |Common Terminologies Applied |
| |minutes | |in Pharmacognosy |
|4 |20 |Brainstorming |Uses of Natural Products |
| |minutes |Presentation | |
|5 |40 |Presentation |Brief History of |
| |minutes |Take home assignment |Pharmacognosy |
|6 |05 |Presentation |Key Points |
| |minutes | | |
|7 |05 |Presentation |Evaluation |
| |minutes | | |
|8 |10minutes|Presentation |Assigment |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Definition and Meaning of Pharmacognosy (15 minutes)
(or unprepared form) in substances obtained originally from natural
sources mainly plant, animal and minerals
o "Pharmakon", meaning a drug or medicine and
o "gignosco" meaning to acquire a knowledge of
sensory characters of crude drug obtained from plant, animal and mineral
sources.
pharmacognosy e.g. natural fibres, flavouring and suspending agents,
colorants, disintegrants, stabilizers, filtering and supporting media
poisonous, hallucinogenic plants, allergens, herbicides, insecticides and
molluscicides
STEP 3: Common Terminologies Applied in Pharmacognosy (20 minutes)
o Is a natural or synthetic substance used in the treatment, cure,
prevention, or diagnosis of disease or used to otherwise enhance
physical or mental wellbeing
o Drugs should be included in the official pharmacopoeia
o Are harvested (i.e. dried) plant or animal sources which
pharmaceutically or medicinally useful products, and before they
undergo extensive processing or modification
o A crude drug can be
gland or other organ of an anima
o An isolated pure compound
o Sources of Crude Drugs:
o It is a chemical compound or substance produced by a living
organism found in nature that usually has a pharmacological or
biological activity for use in pharmaceutical drug discovery and
drug design.
o Is the study of the relationship between people and plants, field
includes studying plants as medicines, alternative methods for healing,
as wild foods, as agricultural crops; modes of transportation; as
clothing and in the religious ceremonies.
o Ethnopharmacology is the scientific study correlating ethnic groups,
their health, and how it relates to their physical habits and
methodology in creating and using medicines
STEP 4: Uses of Natural Products (20 minutes)
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the uses of natural products? |
| |
|ALLOW few students to respond |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
morphine, atropine, digoxin, hormones, antibiotics
emulsifying agents, suppository bases, binders, sweetening and colouring
agents
laboratories & biotechnology.
and in perfumery.
STEP 5: Brief History of Pharmacognosy (50 minutes)
which originates in the health-related activities of the most primitive
race of the remote past
history of natural products in medicine
following ways
o By guesswork or trial and error while searching food.
o By superficial resemblance between plant parts and affected
organs.
o By accidental discovery.
o The Ancient Egyptian Period
o The Babylonians
o Old Indian medicine
o The old Chinese medicine
o The Greek and Romans
o The Arabic Era
o The 18th Century Pharmacognosists
o The 19th Century Pharmacognosy
o The 20th Century Pharmacognosy
STEP 6: Key Points (5 minutes)
(or unprepared form) in substances obtained originally from natural
sources mainly plant, animal and minerals
trial and error while searching for food, by superficial resemblance
between plant parts and affected organs and by accidental discovery
STEP 7: Evaluation (5 minutes)
century?
STEP 8: Assignment (10 minutes)
|Activity: Take home Assignment (10 minutes) |
| |
|DIVIDE students in groups or individual. |
| |
|ASK the students to work on the following assignment |
| |
|List sources and uses of active principals from minerals |
| |
|ALLOCATE time for students to do the assignment and submit |
| |
|REFER students to recommended references |
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 2: The Plant Cell
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |25 minutes |Buzzing/ |Introduction to Plant Cells |
| | |Presentation | |
|3 |60 minutes |Brainstorming/|Functions of Internal structures |
| | |Presentation |of a plant cell |
|4 |20 minutes |Presentation |The plant cell wall |
|5 |05 minutes |Presentation |Key Points |
|6 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Plant Cells (25 minutes)
|Activity: Buzzing (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What is a plant cell? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
[pic]
o The Nucleus
o Nucleolus
o Centrosome
o Ribosomes
o Rough Endoplasmic Reticulum
o Smooth Endoplasmic Reticulum
o Golgi Complex (Golgi apparatus or Golgi body)
o Mitochondria
o Plastids
o Proplastids
o Etioplasts
o Chloroplasts
o Chromoplasts
o Leucoplasts
o Nucleoids
o Vacuoles
STEP 3: Internal Structures of a Plant Cell (60 minutes)
|Activity: Brainstorming (5 minutes) |
|Ask students to brainstorm on the following question: |
| |
|What are the functions of these organelles? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
o Spherical body containing a nucleolus
o Surrounded by the nuclear membrane
o Contains DNA (genetic material in chromosomes)
o An organelle within the nucleus where ribosomal RNA is produced
o It controls many of the functions of the cell (by controlling protein
synthesis)
o It is a small body located near the nucleus that forms and
organizes microtubules
o Microtubules are important in cell division (mitosis)
o Are small organelles composed of RNA-rich cytoplasmic granules that are
sites of protein synthesis
o Endoplasmic reticulum is a system of interconnected, membranous,
infolded and convoluted sacks located in cytoplasm (the ER is
continuous with the outer nuclear membrane)
o It transports materials through the cell and produces proteins
o Smooth Endoplasmic Reticulum are smooth (i.e. no ribosomes on surface)
membrane proteins
o Is a flattened, layered, sac-like organelle that looks like a stack of
pancakes, located near the nucleus
o It packages and transports materials (proteins and carbohydrates) to
different locations inside/outside cell
o Spherical to rod-shaped organelles with a double membrane that
generates energy for the cell
o Are structures responsible for photosynthesis, storage of products like
starch and for the synthesis of many classes of molecules such as fatty
acids etc. needed as cellular building blocks and/or for the function
of the plant. There several types; proplastids, etioplasts,
chloroplasts, chromoplasts, leucoplasts and leucoplasts specialized for
different functions in the plant body.
o Are regions bound by membrane and filled with cell sap and surrounded
by the tonoplast
o In mature living cells may compose 90 – 95% of cell volume
o Storage site for variety of (ergastic) substances such as:
STEP 4: The Plant Cell Wall (20 minutes)
(lamellae)
o Each cell secretes its own wall
o Junction between the walls is the Middle lamella
o Cell wall is penetrated by plasmodesmata connecting neighbouring cells
o Cell walls are primarily composed of sugar polymers i.e.
polysaccharides
o The architecture, mechanics, and function of plants depend crucially on
structure of cell wall
o Regulates cell volume by limiting protoplast size preventing cell
rupture
o Determines cell shape
o Involved in cell-cell adhesion; provide support to cells and whole
plant
o Forms specialized structures for:
o Primary cell wall:
pectin, cellulose molecules: Unbranched glucose chains and
hemicellulose – a highly branched molecule of sugars and sugar
derivatives
galacturonic acid
o Primary wall/Middle Lamellae
o Secondary Cell Wall
completely elongated
cell stops growing
cuticle waxes, suberin and minerals
STEP 5: Key Points (5 minutes)
in synthesis and storage of drugs
the cell
STEP 6: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 3: Plant Tissues
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |30 minutes |Presentation |Plant Tissues and their |
| | |Brainstorming |Classification |
|3 |75 minutes |Presentation |Properties of the Plant Tissues |
|4 |05 minutes |Presentation |Key Points |
|5 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Plant Tissues and Their Classification (30 minutes)
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|Define a plant tissue |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
origin, form and function or as a group of dissimilar cells that perform
a common function. E.g. phloem elements conduct food
cell performs all the vital functions of life. It grows, prepares food,
undergoes metabolism, reproduces and completes its span of life
functions. Due such division of labour, the cells of the plant are
differentiated to form different tissues. The different tissues perform
different functions
o Meristematic tissue and
o Permanent tissue
Scheme below Shows Classification of Plant Tissues
Plant Tissue
Meristematic Permanent
(Mature cells incapable of division) (Cells are capable
of division)
Simple Complex
(Single type of cells) (More than
one type of cells)
Parenchyma Collenchyma Sclerenchyma Xylem
Phloem
Xylem vessel Sieve
tube
Tracheids Companion
Cells
cells that are in a continuous state of division
o Some cells produced by meristematic tissue stop dividing and acquire
certain changes (differentiation) to become permanent tissues of the
plant
types:
o Apical meristem
o Intercalary meristem
o Found in the nodal region, prominently in monocotyledons, e.g.
grasses.
o It is derived from the apical meristem
o Elongates the internodes
o Lateral meristem
o Found along the longitudinal axis of stem and root
o E.g. Vascular cambium and cork cambium (phellogen)
o Produces secondary permanent tissues
o Increase thickness of stem and root
o Are tissues that have temporarily or permanently lost the power to
divide
o The cells formed by the apical meristem are differentiated into
different types of permanent tissues
into two types: –
o Simple tissue
function
o Complex tissue
function together as a single unit
o Xylem is made up of four kinds of cells
o Phloem is composed of four types of cells:
angiosperms
STEP 3: Properties of Plant Tissues (75 minutes)
o May be round, oval, polygonal or rectangular in shape
o Are closely arranged without intercellular spaces
o Have dense cytoplasm with large nuclei.
o Have smaller vacuoles, scattered throughout the cytoplasm.
o Their cell walls are thin, elastic and made up of cellulose
o Generally present in all plant organs
o Form the ground tissue in a plant
o Is living tissue made of thin walled cells
o Is the precursor of all the other tissues
o The cell wall is made up of cellulose
o Parenchyma cells may be oval, spherical, rectangular, cylindrical or
stellate
o Parenchyma is of different types
o In green parts of the plants, the parenchymatous cells have
chloroplasts; they are called chlorenchyma. Its important function is
photosynthesis
o Is a living tissues generally occurring in the dicot stems in two or
more layers below the epidermis, these layers form the hypodermis
o It also occurs in petiole and pedicel
o The cell wall is unevenly thickened, thickening is confined to the
corners of the cells
o Collenchyma strengthen young organs
o Is a dead tissue; lacks protoplasts
o The cells are very thick i.e. have lignified secondary walls (woody)
o Sclereids
thickness
o Fibers
ends, with simple pits
protect from strong winds
E.g. cotton.
o Is a complex tissue mainly responsible for conduction of water and
mineral salts from roots to other parts of the plant
o Primary xylem is formed from procambium,
o Secondary xylem: from vascular cambium
o Tracheids
above the other and their roles are to conduct water and mineral
salts in in gymnosperms and pteridophytes and also to provide
mechanical support to these plants
o Vessels or Tracheae
vessels
perforation plate
angiosperms
mechanical support to the plant
[pic]
o The fibres of sclerenchyma associated with the xylem are known as xylem
fibres
o Give additional mechanical support to the plant body.
o Present both in primary and secondary xylem
o Xylem fibres are dead lignified cells
o The parenchyma cells associated with the xylem are known as xylem
parenchyma
o Is the only living tissue in the xylem
o Their functions are to store food reserves in the form of starch and
fat and assist in conduction of water
o Conducts food materials to various parts of the plant
o Primary phloem: formed from pro-cambium of apical meristem
o Secondary phloem: vascular cambium
o Sieve elements are the conducting elements of the phloem
o Their end walls are transverse or oblique
o End wall contains pores and look like a sieve, hence sieve plate
o Sieve elements are arranged one above the other and form vertical sieve
tubes
o In matured sieve tube, nucleus is absent
o Are thin-walled, elongated, specialized parenchyma cells, associated
with the sieve elements
o Have cytoplasm and a prominent nucleus.
o Present only in angiosperms and absent in gymnosperms and pteridophytes
o Assist sieve tubes in conduction of food materials
o Phloem Parenchyma
o Parenchyma cells associated with phloem
o Are living cells and store starch and fats
o Also contain resins and tannins in some plants
o Present in all pteridophytes, gymnosperms and dicots
o Usually absent in monocots
o Phloem fibres
o The fibers of sclerenchyma associated with phloem are called phloem
fibers or bast fibers
o They are narrow, vertically elongated cells with very thick walls and a
small lumen (the cell cavity)
o Are the only dead tissue in the phloem
o Strengthening and supporting cells
STEP 5: Key Points (5 minutes)
function
a common function. E.g. phloem elements conduct food
STEP 6: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 4: Plant Tissue Systems
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks|
|2 |45 minutes |Presentation |Tissue Systems and their |
| | |Small group |Categorization |
| | |discussion | |
|3 |05 minutes |Presentation |Key Points |
|4 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Tissue Systems and Their Categorization (45 minutes)
|Activity: Small Group Discussion (15 minutes) |
| |
|Ask students to work in groups on the following question: |
|How do you categorize tissues system? |
| |
|ALLOW few students to respond |
| |
|WRITE their responses on the flip chart/board |
| |
|CLARIFY and SUMMARISE by using the content below |
irrespective of its position in the plant body
o Dermal (Epidermal) tissue system,
o vascular tissue system and
o Fundamental (Ground) tissue system
o Epidermal Tissue System:
epidermis
o Are unicellular or multicellular appendages originating from the
epidermal cells
o Trichomes may be branched or unbranched
o Excessive loss of water due to the presence of cuticle
o Epidermis protects the underlying tissues
o Stomata are involved in transpiration and gaseous exchange
o Trichomes help dispersal of seeds and fruits
o Root hairs absorb water and mineral salts from the soil
o Consists of xylem and phloem
o Elements of xylem and phloem are always organized in groups called
vascular bundles
o In dicot stems, the vascular bundle consists of cambial tissue in
between xylem and phloem (i.e. Open vascular bundle)
o In monocot stem, cambium is absent in the vascular bundle (i.e. closed
vascular bundle)
o In roots, xylem and phloem are arranged in an alternate manner on
different radii, this is called radial arrangement
o In stems and leaves, xylem and phloem are arranged at the same radius
and form a vascular bundle together (i.e. Conjoint vascular bundle)
o Conjoint vascular bundles may be;
o Concentric vascular bundle
o Either phloem or xylem surrounds the other completely
o It is amphicribral if the phloem completely surrounds the xylem
o It is amphivasal if the xylem completely surrounds the phloem
o Form the main body of the plants (bulk of plant)
o Includes all the tissues except epidermis and vascular bundles
o In monocot stem, ground tissue system is a continuous mass of
parenchymatous tissue in which vascular bundles are found scattered
i.e. ground tissue is not differentiated into cortex, endodermis,
pericyclic and pith.
o In the leaves, ground tissue is made of chlorenchyma tissues forming
the mesophyll
o These cells are arranged in a single layer without intercellular spaces
o Cells in the pith generally store starch, fatty substances, tannins,
phenols, calcium oxalate crystals, etc.
o Cells or organizations of cells that produce a variety of secretions
o Secreted substance may remain deposited within secretory cell itself or
may be excreted (released from the cell)
o The substance maybe excreted to the surface of the plant or into
intercellular cavities or canals
o Some of the secretions are waste products e.g. resins, rubber, tannins
and various crystals
o Other secretions are useful in plants e.g. enzymes and hormones.
o Secretory structures may be single cells or group of cells (glands)
o Oil cells occur in ginger, pepper, mace, cardamoms, cinnamon and cassia
o The latex cells (produce latex) are found e.g. in Cannabis sativa
STEP 3: Key Points (5 minutes)
irrespective of its position in the plant body
vascular tissue system and fundamental (Ground) tissue system
systems
STEP 4: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 5: Morphology of the Roots
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |25 minutes |Presentation |Characteristics of Plant |
| | | |Roots |
|3 |30 minutes |Presentation |Anatomy of Monocotyledonous |
| | | |Roots |
|4 |30 minutes |Presentation |Anatomy of Dicotyledonous |
| | | |Roots |
|5 |20 minutes |Presentation |Difference between Monocot |
| | |Small group |and Dicot Roots |
| | |Discussion | |
|6 |05 minutes |Presentation |Key Points |
|7 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing
STEP 2: Characteristics of Plant Roots (25 minutes)
the soil
minerals
o Tap roots
o Fibrous roots
o Adventitious roots
[pic]
o The following are the functions of the roots
which the plant is growing)
STEP 3: Anatomy of the Monocotyledonous Roots (30 minutes)
o Epiblema or rhizodermis
o Cortex and
o Stele
Fig 5.1: Internal Structure of the Monocotyledonous Root
[pic]
o Outermost layer of the root
o Single row of parenchyma cells, no intercellular space
o Stomata and cuticle are absent
o Root hairs are always unicellular
o The key function of rhizodermis is protection of the inner
tissues of the root
o The cortex is made of only one type of tissue (parenchyma)
o Has many layers of parenchyma cells with lot of intercellular spaces
o Cortical cells are generally oval or rounded in shape; chloroplasts are
absent
o The cells are living and possess leucoplasts
o The inner most layer of the cortex is endodermis and is composed of
single layer of barrel shaped parenchymatous cells
o The function of cortical cells is storage
o Endodermis (innermost layer of cortex) forms a complete ring around the
stele (tissues inside endodermis)
o There is a band-like structure made of (thickened with) suberin present
in the radial and transverse walls of the endodermal cells
o The band is called Casparian strips
o The endodermal cells opposite to the protoxylem elements, are thin-
walled without Casparian strips
o These cells are called passage cells and their function is to transport
water and dissolved salts from the cortex to the xylem
o Water cannot pass through other endodermal cells due to Casparian
strips (blocking effect)
o The main function of Casparian strips in the endodermal cells is to
prevent the re-entry of water into the cortex once water enters the
xylem tissue
o Vascular tissues are in radial arrangement with many protoxylem
groups
o This arrangement of xylem is called polyarch and the xylem is in
exarch condition
o The tissue present between the xylem and the phloem, is called
conjunctive tissue
o The central portion
o It consists of thin walled parenchyma cells with intercellular
spaces
o These cells are filled with abundant starch grains
STEP 4: Anatomy of the Dicotyledonous Roots (30 minutes)
o Structure of a Dicotyledonous Root
[pic]
o Outermost layer aka rhizodermis (epidermis in stems) made of a single
layer of parenchyma cells which are arranged compactly without
intercellular spaces, with no stomata or cuticle
o Root hair is always single celled
o Protects inner tissues of the root
o Consists of only parenchyma cells loosely arranged with intercellular
spaces to make gaseous exchange easier
o These cells may store food reserves
o The cells are oval or rounded in shape
o Sometimes are polygonal due to mutual pressure
o Cortical cells are devoid of chloroplasts but starch grains are stored
in them
o The cortical cells also possess leucoplasts
o Inner most layer of the cortex is endodermis
o Endodermis is made up of single layer of barrel shaped parenchymatous
cells
o Stele is completely surrounded by the endodermis
o The radial and the inner tangential walls of endodermal cells are
thickened with suberin
o Casparian strips
o Casparian strips are absent in the endodermal cells located opposite to
the protoxylem elements
o These thin-walled cells without Casparian strips are called passage
cells through which water and mineral salts are conducted from the
cortex to the xylem elements
o Water cannot pass through other endodermal cells due to the presence of
Casparian thickenings
o Include all the tissues present inside endodermis
o The stele includes pericycle and vascular tissues
inner to the endodermis
the xylem is in exarch condition
tetrarch
phloem parenchyma
roots they are circular
STEP 5: Difference between Monocot and Dicot Roots (20 minutes)
|Activity: Small Group Discussion (15 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
|What are the differences between monocot root and dicot root? |
| |
|ALLOW students to discuss for 15 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
[pic]
STEP 6: Key Points (10 minutes)
of the soil
adventitious roots
tissues namely the epidermis, the cortex, the endodermis, the pericyle
and the vascular system
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 6: Morphology of Stems
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |20 minutes |Presentation |Introduction to Stems and External|
| | |Brainstorming |Features |
|3 |35 minutes |Presentation |Internal Structures of Dicot Stems|
|4 |30 minutes |Presentation |Internal Structures of Monocot |
| | | |Stems |
|5 |20 minutes |Presentation |Differences between Monocot and |
| | |Small group |Dicot Stems |
| | |discussion | |
|6 |05 minutes |Presentation |Key Points |
|7 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Stems and External Features (20 minutes)
have underground stems
o Stems support the leaves and other structures e.g. flowers,
fruits
o Stems are used for vegetative reproductive i.e. cuttings
o Stems position leaves to receive maximum sunlight
o Stems determine size and shape of the plant
o Facilitates movement of water, minerals, and manufactured
food in the plant
o Some stems carry out photosynthesis
o Stores foods
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the external structures of the stem? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
o Internodes: distances separating one node from
another
o Nodes: Points at which leaves are attached
o Lenticels: Breathing pores
o Buds: Growth of shoot
o Terminal or apical but, at tip of plan
o Axillary bud in nodes on stem
o Bud scale scars: Indicate where terminal bud has been located previous
year
o Leaf scars:
o Show where leaf was attached
o Usually consist of three tissues, Dermal tissue, Ground
tissue and Vascular tissue
o The dermal tissue
protect & control gas exchange
o The Ground tissue
sometimes functions in photosynthesis
o The Vascular tissue
STEP 3: Internal Structures of the Dicot Stem (35 minutes)
and Stele.
o Epidermis
substance
o Cortex
collenchyma cells
intercellular spaces
[pic]
o The Stele
o Layers of cells between endodermis and vascular bundles
o Consist of xylem, phloem and cambium
o Xylem and phloem in stem occur together to form the vascular
bundles
o These vascular bundles are wedge shaped
o The vascular bundle is conjoint, collateral, open and endarch
o Phloem
parenchyma
other parts of the plant body
o Cambium
cells
o Xylem
tracheids
parts of the plant body
o It is the large central portion of the stem
o It is composed of parenchyma cells with intercellular spaces
o The pith extends between the vascular bundles and form primary
medullary rays
o These extensions of the pith between the vascular bundles are
called
o It stores food
STEP 4: Internal Structures of the Monocot Stem (30 minutes)
o Epidermis,
o Hypodermis,
o Ground tissue and
o Vascular bundles
parenchymatous cells and covered with a thick cuticle in some
plants
epidermis
closed
STEP 5: Differences between Dicot and Monocot Stems (20 minutes)
|Activity: Small Group Discussion (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
| |
|What are the differences between monocot and dicot stems? |
| |
|ALLOW students to discuss for 10 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
[pic]
STEP 6: Key Points (10 minutes)
usually above the ground, and in some plants below the ground. The stem
supports the leaves
lenticels, buds, leaf scars and bud scales
various function of support, storage, transport and photosynthetic in
some plants
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 7: Morphology of the Leaf
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |5 minutes |Presentation |Introduction, Learning Tasks |
|2 |15 minutes |Buzzing |Introduction to Plant Leaves |
| | |Presentation | |
|3 |40 minutes |Presentation |Internal Structures of the Plant |
| | |Brainstorming |Leaf |
|4 |25 minutes |Presentation |Pharmacognostic Importance of |
| | | |Epidermis |
|5 |25 minutes |Presentation |Classification of Leaves |
|6 |5 minutes |Presentation |Key Points |
| 7|5 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Plant Leaves (15 minutes)
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What is a leaf? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not|
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
for photosynthesis
o Provides for transpiration and guttation
o Storage of food and water
and stipules
o Petiole
o The lamina
STEP 3: Internal Structures of a Plant Leaf (40 minutes)
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the internal structures of the plant leaf? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Epidermis
that are closely packed and covered with a cuticle
o Epidermal cells
least specialized
monocots than in dicots
o Guard cells
stoma
o Subsidiary cells
o The epidermal layer consists of stomata
a pore surrounded on each side by guard cells and subsidiary
cells
water vapour between the outside air and the interior of the
leaf
epidermis.
Figure 7.1: Transverse Section of a Leaf
[pic]
o Mesophyll is the entire tissue between the upper and lower epidermis is
Mesophyll is differentiated in two regions;
mesophyll) on the adaxial (upper) side and spongy parenchyma (or
spongy mesophyll) on the abaxial (lower) side
spongy or palisade parenchyma)
o Palisade Parenchyma (Palisade Mesophyll)
epidermis
occur only below the upper epidermis
or more layers
the walls of the cell
o Spongy Mesophyll
loosely arranged cells
air spaces
stomatal chambers, connecting to air spaces between the
spongy layer cells
o Vascular Tissues
spongy layer of the mesophyll
falls into two main classes:
usually collateral (less commonly bicollateral), closed in
monocot leaves
Figure 7.1: Transverse Section of a Leaf
[pic]
STEP 4: Pharmacognostic Importance of Epidermis (25 minutes)
leaf drugs
o Shape, size and wall structure of the epidermal cells
as coca and Senna leaves
Hyoscyamus niger and Atropa belladonna.
o When cells surrounding the stomata resemble other epidermal
cells
o Stoma is surrounded by three or four subsidiary cells one of
which is markedly smaller than others
o Two subsidiary cells with their long axes parallel to the
pore
o Two subsidiary cells with their long axis at right angle to
the pore of the stomata
o Variations among anisocytic, paracytic and diacytic types
of stomata:
o Subsidiary cells are arranged along the radii of a
circle. Form, distribution and abundance of epidermal
trichomes
and insects.
o Types of trichomes are characteristic of a plant family or genus
store ergastic/drug substances)
o Uniseriate, biseriate, multiseriate or complicated branched structures
STEP 5: Classification of Leaves (25 minutes)
important for identifying plant species
pattern and shape, then stop
o Arrangement on the stem
o Alternate, opposite, whorled, rosulate,
o Divisions of the lamina
compound leaves, binately compound leaves)
o Leaf margin
lobate, serrate, serrulate, lanceolate)
o Leaf Apex
mucronate,
o Leaf base
o Surface of the leaf
glandular)
STEP 6: Key Points (5 minutes)
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
.
Session 8: Morphology of the Flower
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |20 minutes |Buzzing |Introduction to Flowers |
| | |Presentation | |
|3 |40 minutes |Presentation |Structure of the Flower |
|4 |45 minutes |Presentation |Classification of Flowers |
|5 |05 minutes |Presentation |Key Points |
|6 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Flowers (20 minutes)
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What is a flower? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not|
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
multiple of three
o Dioecious plants
plants
o Monoecious plants
plant
o Polygamous plants
same plant
o Flowers help in pollination process by insects, wind, birds, mammals
or by water
fragrance and produce nectar
fragrance, and non- sticky pollens
or yellow colours, and with no fragrance
fruity smell and open at night
water
STEP 3: Structure of the Flower (40 minutes)
o Peduncle –the flower stalk
o Receptacle –bears the floral organs
o Calyx –made up of sepals (to protect young flower bud)
o Corolla –made up of petals (often colourful)
o Perianth –formed from sepals and petals together
o Stamen –male reproductive structures of the flower
o Pollen -Grains containing the male gametes
o Pistil –female part of the flower
o Carpel –A unit of compound pistil or ovary
o Ovule –bears the female gametes, located in the ovaries
o Gynoecium –one or more pistils (carpel, ovary, ovules, female gametes)
o Androecium –one or two whorls of stamens (filament, anther, pollen
grains, male gametes)
STEP 4: Classification of Flowers (45 minutes)
o Based on presence of male, or female or both reproductive structures
structures
o Based on presence or absence of any structure
o Based on the number of flowers
o Compound flowers or Inflorescence
o Inflorescence are subsequently classified based on pattern of
arrangement into;
o Raceme (or racemose)
o Spadix
o Spike
o Corymb
o Umbel
o Head
o Based on flora variations
on the receptacle into;
o Sepals, petals, and stamens are attached to a convex or
conical receptacle at the base of the ovary
o The ovary is called superior and the perianth
is inferior or hypogynous
o Sepals, petals, and sometimes stamens borne on the edge or
margin of the receptacle and appear to form a cup around
the pistil
o Sepals, petals, and stamens appear to arise from the top
of the ovary
o The ovary is inferior and the perianth is superior or
epigynous
o Based on floral symmetry
longitudinal plane through the axis
halves
any plane
STEP 5: Key Points (5 minutes)
to occur
STEP 6: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 9: Morphology of the Fruit
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |25 minutes |Presentation |Introduction to Fruits |
| | |Buzzing | |
|3 |30 minutes |Brainstorming |Structure of the Fruits |
| | |Presentation | |
|4 |50 minutes |Presentation |Classification of Fruits |
|5 |05 minutes |Presentation |Key Points |
|6 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Fruits (25 minutes)
|Activity: Buzzing (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What is a fruit? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
accessory parts develop into the fruit
parthenocapy
peduncle and inflorescence axis may be incorporated and become part of
the fruit for instance in apples and pineapple
STEP 3: Structure of the Fruit (30 minutes)
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the parts of the fruit? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
systems
pericarp;
o Exocarp
o Mesocarp
o Endocarp
STEP 4: Classification of Fruits (45 minutes)
called true fruits e.g. tomatoes while those including accessory
structures are false fruits e.g. pears.
flowers and other structures forming the fruit, into;
o Simple fruits
o Aggregate fruits
o Multiple fruits
structures
dry fruits
o Fleshy/Succulent fruits may be soft or hard
o Berries
o Hesperidiums
o Pepos
o Drupes/stones
stone-like endocarp
o Pome
e.g. petals, sepals and receptacle
o Polydrupes
strawberries, blackberries etc.
o Dry fruits may be dehiscent or indehiscent depending on whether
they split open to release the seeds or not. They include;
o A winged fruit
o A hard dry fruit with one seed which almost feels the
pericarp but attached loosely
o Simple dry fruit similar to achenes, but formed from two
or three carpels. Pericarp is relatively hard and heavy
o It is a simple, dry fruit in which the testa and
pericarp are fused
o Are dry fruits which split along both dorsal and ventral
sutures to release their seeds e.g. Cassia angustifolia
o Dry fruits which splits along inner suture only e.g.
strophanthus
o Dry fruits formed from two or more carpels
of the fruit
STEP 7: Key Points (5 minutes)
one or more seeds
called true fruits
which collectively form the pericarp
and other structures forming the fruit
fruits and dry fruits
STEP 8: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 10: Morphology of the Seed
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |10 minutes |Presentation |Definition of a Seed |
| | |Brainstorming | |
|3 | |Small group |Structure of a Seed |
| |35 minutes |discussion | |
| | |Presentation | |
|4 |05 minutes |Presentation |Key Points |
|5 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Definition of a Seed (10 minutes)
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What is a seed? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
fertilization
anatropous ovules
STEP 3: Structure of a Seed (35 minutes)
|Activity: Small Group Discussion (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
|Write down the external structures found on a seed |
| |
|ALLOW students to discuss for 15 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
External structures of a seed
o Seed coat
o Funicle or stalk
o Micropyle
o Hilum
o Raphe
o Aril
o Elaiosome
seed
o Caruncle or Strophiole
o Embryo
o One cotyledon in monocotyledons plants
o Two cotyledons in almost all dicotyledons and two or more
in gymnosperms
part stores proteins
o Seeds with no endosperm at maturity e.g. sunflower
o Have endosperm at maturity e.g. castor seed
STEP 5: Key Points (5 minutes)
fertilization and occurs in many shapes and sizes
anatropous ovules
testa and tegmen
exalbuminous seeds while in albuminous seeds the endoperm persists
STEP 6: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 11: Pharmaceutical Barks
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning tasks |
|2 |10 minutes |Presentation |Introduction to |
| | |Buzzing |Pharmaceutical Barks |
|3 |20 minutes |Presentation Small |Structure of Pharmaceutical |
| | |group Discussion |Barks |
|4 |15 minutes |Presentation |Barks Curvatures |
|5 |05 minutes |Presentation |Key Points |
|6 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Pharmaceutical Barks (10 minutes)
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What is a bark? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not |
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
by the cambium. The bark lies outside the cambium.
STEP 2: Structure of Pharmaceutical Barks (20 minutes)
|Activity: Small Group Discussion (15 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
| |
|Describe the structure of a bark |
| |
|ALLOW students to discuss for 15 minutes |
| |
|ALLOW few groups to present and the rest to add points not mentioned|
| |
| |
|CLARIFY and SUMMARIZE by using the contents below |
o Epidermis
stomata
o Primary cortex
and parenchyma
o Endodermis
o Pericycle
occur opposite each group of phloem
o Phloem: Consisting of sieve tubes, companion cells and phloem
parenchyma separated by radially arranged medullary rays
o Activity of the cambium and cork cambium or phelogen modifies the
structure of the young bark
o Pericycle is ruptured
o Phelogen produces secondary cortex or phelloderm
o Periderm is formed
o Lenticels replace stomata for gaseous exchange
o The fully matured barks have two parts; the outer bark and the inner
bark
o But in presentation for the market in some drugs only the inner bark
is presented e.g. in cinnamon
o The bark shows certain characteristics that are of diagnostic
importance;
STEP 4: Bark Curvatures (15 minutes)
tree and dried
nearly flat
o Flat
o Curve
o Channelled
o Single quill
o Double quill
o Compound quill
STEP 6: Key Points (5 minutes)
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 12: Cultivation of medicinal plants
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |20 minutes |Presentation |Classification of Medicinal Plants|
| | |Buzzing | |
|3 |30 minutes |Presentation |Cultivation of Medicinal Plants |
| | |Brainstorming | |
|4 | | |Factors Affecting Cultivation of |
| |25 minutes |Presentation |Medicinal Plants |
|5 |20 minutes |Presentation |Plant Breeding Methods |
|6 |05 minutes |Presentation |Key Points |
|7 |05 minutes |Presentation |Evaluation |
|8 |10minutes |Presentation |Assignment |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Classification and Nomenclature of Medicinal Plants (20 minutes)
o Alphabetical Classification
names of the medicinal plant
interrelationships between drugs e.g. in Pharmacopoeias
o Taxonomic Classification
are obtained
species
o Morphological Classification
classification
o For instance, leaves, flowers, fruits, seeds, wood, barks,
rhizomes & roots
o For instance, dried lattices, extracts, gums, resins, oils, fats and
waxes
o Pharmacological or therapeutic Classification
most important constituents or their therapeutic uses, e.g.
cardiotonic drugs, CNS stimulants, Muscle relaxants, etc.
o Chemical or Biogenetic Classification
e.g. alkaloids, glycosides, volatile oils
o The binomial system founded by the Swedish biologist Linnaeus is used
o The first name (genus name) starts with a capital letter and the
second name (species) begins with a small letter
o Genus and species names may be followed by author’s name who first
described the species or variety. e.g. Artemisia cina Berg.,
Caryophyllos aromaticus L
o Sometimes, species name is derived from author’s name, e.g. Cinchona
Ledgeriana after Charles Ledger
o The species name usually indicates certain characteristics of the
plant e.g.
o The generic name may indicate certain characters of the plant e.g.
STEP 3: Cultivation of Medicinal Plants (30 minutes)
plants
ginger, cinnamon and opium
o Sparse distribution e.g. Sceletium tortuosum. Potentially difficult to
transport plant to area of processing
o Difficult access (e.g. forests, mountains etch)
o Collector ignorance leads to admixture of other plants, collection of
undesired plant parts or stage of development or during an incorrect
season ( loss of medicinal activity.
o Damage to natural environment which leads to extinction of a species.
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the advantages of cultivation of medicinal plants? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
o Only desired species are collected therefore uniform quality.
o Collection, transport and access to processing facilities is improved.
o Better control of soil quality, pests and plant disease.
o Supply: Constant and Regular (Controlled)
o Collectors are trained
STEP 4: Factors Affecting Cultivation of Medicinal Plants (25 minutes)
o Temperature
metabolism of the plants
Tropical and Sub-tropical plants in temperate regions
weather (winter)
o Very hot days lead to a physical loss of oil
o Rainfall
plants
substances such as glycosides, tannins, flavonoids and some
volatile oils through leaves and roots
o Day-length (sunlight)
plant
are greatly affected by amount of sunlight
gives high content of alkaloids than does shade
e.g. Nicotiana
o Radiation
plants grown in glass houses have less phenols and terpenoids
in the leaves (flavonoids, volatile oils)
o Latitude and Altitude
altitude
higher altitude
(100 – 200 M)
unsaturated fat content.
o Soil Condition
effect growth of medicinal plants e.g.
o Allelopathy
each other, which may be either beneficial or harmful
of:
o Mutual dependant organisms (beneficial) symbiosis e.g. Urtica
dioica
o Destructive allelopathy antibiosis e.g. Belladonna growth is
inhibited when cultivated next to mustard
o Drying & storage methods of drugs
STEP 5: Plant Breeding Methods (20 minutes)
o Selection
o Hybridization
o Transgenic medicinal plants
o Individual plants showing the most desirable characteristics are chosen
and interbred
o Second population has improved quality
o Improved growth rate, ]
o Disease resistance
o Winter hardiness
o Increased yield of medicinal actives
o Mating of different species or varieties to produce a hybrid progeny,
different from both parents (incorporating desired characteristics).
E.g. Mentha piperita and M. spicata are naturally occurring hybrids
o Genetic Engineering: Recombinant DNA
another
from one organism to another
o Seed
influence germination, higher plants need soaking before germination
(water/acid)
o Vegetatively
o By division
point
o Runners
o Stolons
o Cuttings
o Grafting
o Fermentation
o Inoculation
o Cell culture
STEP 6 Key Points (5 minutes)
medicinal plants
transgenic medicinal plants
post-collection factors
STEP 7: Evaluation (5 minutes)
STEP 8: Assignment (10 minutes)
|Activity: Take home Assignment (10 minutes) |
| |
|DIVIDE students in groups or individual. |
| |
|ASK the students to work on the following assignment |
| |
|Explain the importance of plant as a major source of drugs |
|ALLOCATE time for students to do the assignment and submit |
| |
|REFER students to recommended references |
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 13: Collection, Processing and Storage of Medicinal Plants
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |30 minutes |Presentation |Collection of Medicinal Plants |
|3 |45 minutes |Presentation |Processing of Crude Drugs |
|4 | |Small group |Storage of Crude Drugs |
| |30 minutes |Discussion | |
| | |Presentation | |
|5 |05 minutes |Presentation |Key Points |
|6 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Collection of Medicinal Plants (30 minutes)
sustainability of medicinal plants
cultivated species such as Fennel, ginger, cinnamon and opium
or cultivated species.
year, so collection should be done at the right time when active
constituents are at the highest levels. For instance,
o Time (season) of the year
levels of anthraquinones in summer. Anthranol are oxidized to
anthraquinones in summer
o Time of the day
glycosides
alkaloids
o Stage of maturity
cloves contain very little oil
open
medicinal plants;
o Underground organs are collected when aerial parts die down
o Leaves are collected when flowers are beginning to open
o Flowers are collected in dry weather and just before they fully
expand e.g. cloves
o Fruits and seeds are collected when fully mature but unripe
o Barks are collected in damp weather
o Unorganized drugs are collected in dry weather
o Leaves, flowers and fruits should not be collected when covered with
dew or rain
o Discoloured or parts attacked by insects should not be collected
o Large organs should be sliced soon after collection to facilitate
drying
o Limits of unwanted parts in desired parts must be considered when
collecting medicinal plants e.g. aerial stems in rhizomes
STEP 3: Processing of Crude Drugs (45 minutes)
such as market requirements
constituents, geographical source and other related factors
o There various reasons for drying drugs obtained from medicinal
plants
transport and storage
o Enzyme action may be desired or undesirable after collection
pods, gentian roots and cocoa seeds, the collected drug is dried
slowly at moderate temperature
reaction is not desired e.g. digitalis leaves
o Methods of Drying
o There are various methods that are used in drying crude drugs
o The choice of a drying method depends on physical characteristics of
the plant and chemical characteristics of the active constituents
o Is done when drugs are not adversely affected by excessive
sunlight.
o Drugs are dried in thin layers and tuned over occasionally
o Drugs dried in this way include clove and cardamom
o Done when sunlight causes discoloration and warping/shrivelling
of the drugs e.g. cinnamon
artificial drying
o Generally, leaves, herbs and flowers are dried between 20-40oC,
barks and roots: 40-65oC
drugs which cannot be sufficiently dried by other methods
pressure
proteins and royal jelly
o For Leaves/Herbs:
shrivelling and discoloration
o For Roots/Rhizomes:
of the drug
to avoid mould growth
o For Flowers;
o Volatile oil-containing drugs;
oil contents
o Fruits and Seeds;
o Bark
o Factors to consider when making a choice of a drying technique
STEP 4: Storage of Crude Drugs (30 minutes)
|Activity: Small Group Discussion (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
|How should crude drugs be stored? |
| |
|ALLOW students to discuss for 15 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
factors
oxygen while biological factors include fungi, bacteria, worms, insects
and mites
bark. Active constituents decrease massively
other pests, so they should be frequently examined during storage or may
require sterilization by ethylene oxide or methyl chloride before storage
STEP 5: Key Points (5 minutes)
plants
STEP 6: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 14: Extraction of Active Medicinal Principles from Natural Sources
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning |
| | | |Tasks |
|2 |10 minutes |presentation |Definition of terms |
|3 |05 minutes |Presentation |Types of extracts |
|4 |30 minutes |Presentation |Properties and types of |
| | |buzzing |solvents |
|5 |15 minutes |Presentation |Mechanism of Solvent |
| | | |Extraction |
|6 |05 minutes |Presentation |Factors affecting |
| | | |extraction |
|7 |40 minutes |Presentation |Methods of extraction |
| | |Small group Discussion| |
|8 |05 minutes |Presentation |Key Points |
|9 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Objectives (05 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Definition of terms (10 Minutes)
liquid by means of liquid solvent.
o The separation of medicinally active portions of plant or animal
tissues from the inactive or inert components by using selective
solvents.
o In this method the wanted components are dissolved by the use of
selective solvents known as menstrum & undissolved part is a marc,
after the extraction unwanted matter is removed.
contain all the constituents which are soluble in the solvent.
(solutes) without chemical changes.
o (The term “Solvents” refers to a class of chemical compounds described
by function – the term derives from Latin, meaning roughly to “loosen.”
In chemistry, solvents – which are generally in liquid form – are used
to dissolve, suspend or extract other materials, usually without
chemically changing either the solvents or the other materials
Step 3: Types of Extracts (05 minutes)
o Dry extract (Tab, cap.) E.g. belladonna extract
o Soft (Ointment, suppository) E.g. glycerrhiza extract.
o Liquid: As tincture.
STEP 4: Properties and Types of Solvents (30 minutes)
|Activity: Buzzing (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
| |
|What are types of solvents? |
| |
|ALLOW students to discuss for 15 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
o Molecular structure of solvents
o Inorganic solvents
o Organic solvents
o Molecular structure of solvents, Ability of a substance to dissolve
another substance is determined by compatibility of their molecular
structures (like dissolves like).
o A polar protic molecule consists of a polar group OH and a non-
polar tail. The structure may be represented by a formula R-OH.
Polar protic solvents dissolve other substances with polar protic
molecular structure. Polar protic solvents are miscible with water
(hydrophilic).
Examples of polar protic solvents:
o Dipolar aprotic molecules possess a large bond dipole moment (a
measure of polarity of a molecule chemical bond). They do not
contain OH group.
Examples of dipolar aprotic solvents:\
o Electric charge in the molecules of non-polar solvents is evenly
distributed, therefore the molecules have low dielectric
constant. Non-polar solvents are hydrophobic (immiscible with
water). Non-polar solvents are liphophilic as they dissolve non-
polar substances such as oils, fats, greases.
Examples of non-polar solvents:
o The most popular inorganic (not containing carbon) solvents are
o water (H2O) and aqueous solutions containing special additives
(surfacants, detergents, PH buffers, inhibitors).
o Other inorganic solvents are liquid anhydrous
o Oxygenated solvent is an organic solvent, molecules of which contain
oxygen. Oxygenated solvents are widely used in the paints, inks,
pharmaceuticals, fragrance sectors, adhesives, cosmetics, detergents,
food industries.
Examples of oxygenated solvents:
STEP 5: Mechanism of Solvent Extraction (15 minutes)
o Dissolution of extractive substances out of disintegrated cells.
o Dissolution of extractive substances out of intact plant cell by
diffusion (requires steeping and swelling)
o Penetration of the solvent into the plant cells and swelling of the
cells.
o Diffusion of the dissolved extractive substances out of the cell.
o Plant constituents are usually contained inside the cells.
o Therefore, the solvent used for extraction must diffuse into the cell
to dissolve the desired compounds whereupon the solution must pass the
cell wall in the opposite direction and mix with the surrounding
liquid.
o An equilibrium is established between the solute inside the cells and
the solvent surrounding the fragmented plant tissues
STEP 6: Factors Affecting Extraction Process (05 Minutes)
STEP 7: Methods of extraction (45 minutes)
Percolation, Continues hot extraction, Supercritical fluid extraction,
counter current extraction, Microwave assisted extraction, Ultra
sonication-Assisted Extraction:
o Infusion
drug for a short period of time with cold or boiling water. These
are dilute solutions of the readily soluble constituents of crude
drugs.
o Fresh Infusion: e.g. Infusion of orange (
o Concentrated Infusion: e.g. concentrated infusion of Quassia
o Decoction
volume of water for a defined time; it is then cooled and strained or
filtered. This procedure is suitable for extracting water-soluble,
heat stable constituents. e.g. Tea , Coffee
o Digestion
the process of extraction. It is used when moderately elevated
temperature is not objectionable. The solvent efficiency of the
menstruum is thereby increased. e.g. Extraction of Morphine
o Maceration
stoppered container with the whole of the solvent and allowed to
stand for a period of at least 3 days (3 – 7 days) with frequent
agitation, until soluble matter is dissolved. The mixture is then
strained (through sieves / nets), the marc pressed and the combined
liquids clarified (cleaned by filtration) or by decantation, after
standing.
o Simple maceration: for organized and unorganized Crude drug e.g.
Squill
o Double maceration: Concentrated infusion of orange
o Triple maceration: The maceration process may be carried out with
help of heat or stirring e.g. i) Concentrated infusion of Quassia
STEP 8: Key Points (5 minutes)
from crude drug material.
STEP 9: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 15: Adulteration of Medicinal Plants
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |10 minutes |Presentation |Meaning of Adulteration |
|3 | 25 |Presentation |Methods and Effects of |
| |minutes | |Adulteration |
|4 |05 minutes |Presentation |Key Points |
|5 |05 minutes |Presentation |Evaluation |
|6 | 10minutes |Presentation |Assignment |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Meaning of Adulteration (10 minutes)
standards or which does not comply with the requirement of the
pharmacopoeia cheap and easily available in large quantities
o An adulterant must be
o Deliberate adulteration
of profits
o Accidental adulteration
plants are scarce or expensive
substitution of the original crude drugs partially or fully with other
substances which are either free from or inferior in therapeutic and
chemical properties
o Faulty collection of the drug
o Improper preparation of the drug
o Poor storage condition
o Deliberate practices
o Scarcity of the drug
o High price of the drug in the market e.g. clove, cardamom
o Contraband drug e.g. opium
STEP 3: Methods and Effects of Adulteration (25 minutes)
o Which leads to a sub-standard drug
o This may result from;
regardless of the time factor –collecting herbs prior/after ideal
time
ripe fruits (should be nearly ripe), clove (flowers in bud stage)
Chamomile leaves
from ginger rhizome/incorrect drying conditions
tight containers
material
o When the quality or medicinal value/ usefulness of herb is impaired or
destroyed by bacterial/ fungal action, insects, rodents or other pests
o Normally results from incorrect storage (effects of water/temperature)
o Avoided by careful attention to the drying and storage conditions
o Occurs when value or quality of the drug has been impaired
o Admixture occurs when another species is added to the medicinally
valuable drug; intentional or accidentally
o This may result from;
definition
o This is the deliberate addition of inferior material with the intention
of decreasing medicinal action of the desired drug e.g.
o Substitution is the addition of an allied drug, or one which is
botanically different e.g. Digitalis thaspi for Digitalis purpurea
o Large mass of stomes mixed with liquorice root, pieces of limestone
are added in asafoedita
STEP 4: Key Points (5 minutes)
debasement of that drug
standards or which does not comply with the requirement of the
pharmacopoeia.
scarce or expensive
STEP 5: Evaluation (5 minutes)
STEP 6: Take Home Assignment (10 minutes)
|Activity: Take Home Assignment (10 minutes) |
| |
|DIVIDE students in groups or individuals |
| |
|ASK the students to work on the following Assignment |
|List monographs of medicinal plants |
|List the effects of adulteration |
|List classes of plants containing toxic substances |
|List toxic substances from plants |
|List common misuses of medicinal plants |
| |
|ALLOCATE time for students to do the assignments and submit |
| |
|REFER students to recommended reference |
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 16: Introduction to Ergastic Substances
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning |
| | | |Tasks |
|2 |10 minutes |Presentation |Meaning and Classification|
| | | |of Ergastic Substances |
|3 | |Presentation |Carbohydrates |
| |15 minutes |Buzzing | |
|4 | |Small group discussion|Proteins |
| |25 minutes |Presentation | |
|5 |15 minutes |Presentation |Gums, Mucillages and |
| | | |Pectins |
|6 |15 minutes |Presentation |Tannins |
|7 |25 minutes |Presentation |Ergastic Crystals |
|8 |05 minutes |Presentation |Key Points |
|9 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Objectives (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Meaning and Classification of Ergastic Substances (10 minutes)
by microscopical examination or by chemical and physical tests
metabolism (excretory/secretory products)
o Carbohydrates
o Proteins
o Fixed oils and fats (Elaioplasts/spherosomes)
o Alkaloids (and purines)
o Glycosides
o Gums, mucilages and Pectins
o Volatile oils and Resins
o Tannins
o Crystals (Calcium oxalate, calcium carbonate and silica)
STEP 3: Carbohydrates (15 minutes)
|Activity: Buzzing (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
| |
|What are the characteristics and chemicals tests of cellulose and |
|starch? |
| |
|ALLOW students to discuss for 10 minutes |
| |
|ALLOW few groups to present and the rest to add points not mentioned|
| |
| |
|CLARIFY and SUMMARIZE by using the contents below |
o Found in plastids (leucoplasts and amyloplasts)
o Occurs in granules (starch grains) of different sizes in almost all
organs of plants
o Occurs abundantly in roots, rhizomes, fruits and seeds
o Physical tests:
in cold water or alcohol
o Chemical tests for starch granules
shape and crystallization pattern
with iodine
STEP 4: Proteins (25 minutes)
|Activity: Small Group Discussion (10 minutes) |
| |
|DIVIDE students into small manageable groups |
|ASK students to discuss on the following question |
| |
|What are the characteristics and chemicals tests of proteins? |
| |
|ALLOW students to discuss for 10 minutes |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
joined by peptide bond
crystalline forms
(e.g. castor seeds)
thin membrane
and an angular body known as crystalloids
thin membrane (globoidal in shape)
starch is present in large amounts)
o Millon’s reagent, which stains the protein red on warming
o Iodine solution, which stain the ground substance and crystalloid
yellowish-brown but leaves the globoids unstained
o Picric acid which stain stains the ground substance and crystalloid
yellow
STEP 5: Gums, Mucillages and Pectins (15 minutes)
units
deposited on the cell wall in successive layers
irrigated with water, stratifications (of the successive layers of these
ergastic substances) may often be seen e.g. Mustard and linseed
o There are no specific tests for these substances
o The official solution of Ruthenium red
Mustard
o Alkaline solution of Corallin
o Chlor-zinc-iodine or Methylene blue dissolved in alcohol and
glycerine
STEP 6: Tannins (15 minutes)
plants
sp.), eucalyptus (Eucalyptus sp.), willow (Salix caprea), pine (Pinus
sp.) etc
powder, flakes or sponge
a barrier for micro-organisms (bacteria and fungi) and protect the tree
o Sections containing tannins when treated with dilute ferric chloride
are stained bluish-black or greenish colour
STEP 7: Ergastic Crystals (25 minutes)
o Oxalic acid rarely occurs in free state in plants
o Is extremely common as its calcium salt in the form of crystals
o The most common forms of crystals encountered are: –
o Prisms e.g. Senna, Hyoscyamus, Quassia, Liquorice, Cascara,
Quillaia, Rauwolfia)
o Rosettes e.g. Rhubarb, Stramonium, Senna, Clove etc.
o Single acicular crystals e.g. Ipecacuanha, Gentian, Cinnamon
o Bundles of acicular crystals e.g. Squill
o Microsphenoidal or sandy crystals e.g. Belladonna
o Cells containing calcium oxalate may differ from the surrounding cells
in size, form or contents and are often referred to as idioblasts
o Tests
effervescence
o Calcium carbonate crystals may be found embedded or incrusted in the
cell walls
o Concentration of calcium carbonate formed on outgrowths of the cell
walls are known as cystoliths
o Families in which calcium carbonate crystals in the orders Urticaceae,
Moraceae, Cannabinaceae (e.g. coriander) etc.
o Well formed cystoliths are seen in the enlarged upper epidermal cells
and in the clothing hairs of the lower epidermis of the leaf of
Cannabis sativa
o Tests
dissolving with effervescence in acetic, hydrochloric or sulphuric
acid
sulphate gradually separate
o Occur as feathery-like aggregates or sphaerocrystalline masses in the
cells of many of the Rutaceae (e.g. Lemon and Oranges) and in isolated
plant of other families
o Forms the skeleton of diatoms,
o Occurs as incrustation on cell walls or as masses in the interior of
cells e.g. in the cells of the sclerenchymatous layer of Cardamom seeds
STEP 8: Key Points (5 minutes)
by microscopical examination or by chemical and physical tests
and fats, alkaloids, glycosides, gums, mucilages and pectins, volatile
oils and resins, tannins and crystals
STEP 9: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 17: Gum, Mucilage and Pectins
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |15 minutes |Presentation |Introduction to Gum, Mucilage and |
| | | |Pectins |
|3 |25 minutes |Presentation |Natural Source, Constituents and |
| | | |Uses of Tragacanth Gum |
|4 |25 minutes |Presentation |Natural Source, Constituents and |
| | |Buzzing |Uses of Acacia Gum |
|5 |20 minutes |Presentation |Natural Source, Constituents and |
| | | |Uses of Sterculia Gum |
|6 |20 minutes |Presentation |Natural Source, Constituents and |
| | |Brainstorming |Uses of Psyllium |
|7 |05 minutes |Presentation |Key Points |
|8 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Gums, Mucilage and Pectins (15 minutes)
mixture of sugar and uronic acids.
plant or owing to unfavourable conditions such as draught, by a breakdown
of cell walls e.g. tragacanth (extracellular formation gummosis)
within the cell (intracellular formation) and may represent storage
material, a water storage reservoir or a protection for germinating
seeds.
senna, in seed coats (linseed, psyllium etc.) roots (marshmallow) and
barks (slippery elm)
STEP 3: Natural Source, Constituents and Uses of Tragacanth Gum (25
minutes)
o Tragacanth is the “air hardened gummy exudate flowing naturally or
obtained by incision, from the trunk & branches of Astragalus gummifer
(Labillardiere) and certain other spp. of Astragalus
o Tragacanth is the gum that exudes immediately after injury of the plant
occurs and is therefore pre-formed in the plant
o Tragacanthin
o Bassorin
o Sugar
o Uronic acids
o Used as a suspending agent for insoluble powders
o Binding agent in pills and tablets
o Emulgent
o A binding agent in food industry
STEP 4: Natural Source, Constituents and Uses of Acacia Gum (25 minutes)
o Acacia gum is a dried gum obtained from the stem and branches of Acacia
senegal and some other spp of Acacia (Leguminoseae).
o Arabin (Arabic acid)
o Galactose
o Arabinose
o Rhamnose
o Uronic acids
o Oxidase enzyme
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What are the uses of acacia gum in pharmacy? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not |
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Used as a general stabilizer in emulsions
o Used in lozenges
o As demulcent
o Used for treatment of diarrhoea, cough and sore throat
o It is also widely used in food and drink industries
STEP 5: Natural Source, Constituents and Uses of Sterculia Gum (20
minutes)
o Sterculia gum is the gummy exudate obtained from the tree, Sterculia
urens (Sterculiaceae).
o Uronic acids
o Partial hydrolysis yields
o Granular grades are used as a bulk laxative (second only to psyllium
seed in use as a bulk laxative).
o Powdered gum is used in lozenges, pastes and denture fixture powders.
STEP 6: Natural Source, Constituents and Uses of Psyllium (20 minutes)
o Psyllium consists of the dried, ripe seeds of Plantago afra (Plantago
psyllium), P. indica (P. arenaria) and P. ovata (Plantaginaceae)
o Mucilage
o Fixed oil
o Sugars
o Sterols
o Protein
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What are the uses of psyllium? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not |
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Psyllium is mainly used as a
with elevated cholesterol,
STEP 7: Key Points (5 minutes)
yield a mixture of sugar and uronic acids.
to unfavourable conditions such as draught, by a breakdown of cell walls
e.g. tragacanth
senegal and some other spp of Acacia (Leguminoseae).
STEP 8: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 18: Introduction to Alkaloids
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |35 minutes |Presentation |Occurrence and Distribution of |
| | | |Alkaloid |
|3 |35 minutes |Presentation |Naming of Alkaloids |
|4 |35 minutes |Presentation |Properties of Alkaloids |
|5 |05 minutes |Presentation |Key Points |
|6 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Occurrence and Distribution of Alkaloids (35 minutes)
nitrogen atoms usually in a heterocyclic ring and have a marked
physiological action on man or other animals
specific species
papaveracea
bacteria, fungi, plants, and animals
alkaloids.
Ephedrine, Colchicine, Mescaline.
with organic acids), as glycosides, and as alkaloid N-oxides
fruits, leaves and in latex
o Protect against insects and herbivores due to their bitterness and
toxicity
o Are final products of detoxification in some cases.
o Source of nitrogen in case of nitrogen deficiency
o Act as growth regulators in certain metabolic systems.
STEP 3: Properties of Alkaloids (35 minutes)
o Most alkaloids are crystalline solids, a few are amorphous solids e.g.
emetine.
o Some are liquids that are either volatile or non-volatile
o Majority of the alkaloids are colorless but some are colored;
o Alkaloidal bases are soluble in organic solvents and insoluble in water
o Salts of alkaloids are usually soluble in water and, insoluble or
sparingly soluble in organic solvents.
o Alkaloids are bitter tasting
o Many alkaloids are extremely toxic to other organisms.
3.5 times more active than d-ephedrine
o Alkaloids are amines (may be primary, secondary, tertiary and
quaternary)
o Most alkaloids contain oxygen and are solid in nature e.g.
Atropine.
o Alkaloids are decomposed by heat, except Strychnine and Caffeine
o Alkaloids react with acids to form salts
o Some alkaloids are unstable when exposed to light and oxygen
while others are not
STEP 5: Naming of Alkaloids (35 minutes)
o Generic plant name – Atropine from Atropa belladonna
o Specific name of the plant – Cocaine from Erythroxylum coca
o Names of loved ones e.g. Cathelenine
o Common name of the plant – Ergotamine from ergot (rye)
o Physiological action of the plant – Emetine producing emesis
Norpseudoephedrine and Nornicotine.
o "Iso-, pseudo-, neo-, and epi-" indicate different types of isomers
o "-dine" designates isomerism as Quinidine and Cinchonidine.
o "-ine" indicates, in case of ergot alkaloids, a lower pharmacological
activity e.g. Ergotaminine which is less potent than ergotamine
STEP 7: Key Points (5 minutes)
nitrogen atoms usually in a heterocyclic ring and have a marked
physiological action on man or other animals
bacteria, fungi, plants, and animals and are part of the group of natural
products
with organic acids),
STEP 8: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 19: Classification, Uses and Extraction of Alkaloids
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
plants
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |35 minutes |Presentation |Classification of Alkaloids |
|3 |15 minutes |Brainstorming |Pharmacological Actions and Uses |
| | |Presentation |of Alkaloids |
|4 |30 minutes |Presentation |Extraction, Purification and |
| | | |Isolation of Alkaloids |
|5 |20 minutes |Presentation |Chemical Tests for Alkaloids |
|6 |10 minutes |Presentation |Key Points |
|7 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Classification of Alkaloids (40 minutes)
chemical structure and their pharmaceutical action
o On the basis of basicity
bases e.g. atropine, amphoteric alkaloids e.g. phenolic alkaloids
like morphine and neutral alkaloids e.g. colchicine
o Biological origin
o Chemical structure
o Biosynthetic pathway
classification) is more useful and practical
o Typical/True Alkaloids
heterocyclic ring e.g. Atropine
do not have heterocyclic ring in their structures
structures
atropine, etc.
o Proto-alkaloids/Atypical Alkaloids
heterocyclic ring
basic
erythromycin, taxol
o Pseudoalkaloids
Theobromine
[pic]
STEP 3: Pharmacological Actions and Uses of Alkaloids (15 minutes)
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the uses of alkaloids? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Analgesics and narcotics e.g. morphine and codeine
o CNS stimulants e.g. caffeine and strychnine
o Anticancer activity e.g. vincristine, vinblastine and taxol
o Mydriatics e.g. atropine
o Antitussive e.g. codeine
o Expectorant effect e.g. lobeline
o Smooth muscle relaxants e.g. atropine and papaverine
o Anthelmintic activity e.g. pelletierine and arecoline
o Antiparasitic action e.g. quinine and emetine
o Antibacterial activity e.g. berberine
STEP 4: Extraction, Purification and Isolation of Alkaloids (25 minutes)
o This technique involves the distribution of alkaloid bases between
acid or aqueous solution and immiscible organic solvent
o First Stage
alkali like sodium and potassium carbonate, ammonia, calcium
hydroxide. A paste is made with water, dried and re-powdered
substances and sets free the alkaloids
o Second Stage
with chloroform or other organic solvent
soluble in solvent
o Third stage
dilute sulphuric acid separating the aqueous layer before adding
the next portion
being soluble in water, pass into the aqueous layer
o Fourth Stage
precipitates that form are collected, washed with water and dried
sulphates, soluble in water and the free alkaloid which being
practically insoluble in water is precipitated
Plant material + water + Fixed alkali [pic] steam containing
alkaloids
Heat received in
acidic solution
o Direct crystallization from solvent
o Steam distillation
o Chromatography techniques
o Gradient pH techniques
STEP 5: Chemical Tests for Alkaloids (20 minutes)
o Reagents used for carrying out chemical tests for alkaloids
include;
o Produces white or yellow colour precipitates
bismuth nitrate)
o Produces orange red precipitates
o Produces brown or reddish-brown precipitates
o Gives yellow crystalline precipitates
o Give buff coloured precipitates
o Van-Urks test
o Vitali-Morin test
STEP 6: Key Points (5 minutes)
chemical structure and their pharmaceutical action hence classified by
using various methods
i.e. potassiomercuric iodide solution, Dragendorff's reagent i.e.
solution of potassium bismuth iodide, Wagner’s reagent i.e. iodine in
potassium iodide and Hagers reagent i.e. picric acid
by using the Wagner’s reagent or by colour reaction tests such as Vitali-
Morin test
STEP 7: Evaluation (10 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 20: Tropane Alkaloids
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Objectives |
|2 |20 minutes |Presentation |Introduction to Tropane Alkaloids |
| | |Buzzing | |
|3 |20 minutes |Presentation |Natural Sources and Uses of |
| | |Brainstorming |Stramonium |
|4 |25 minutes |Presentation |Natural Sources and Uses of |
| | | |Belladonna |
|5 |20 minutes |Presentation |Natural Sources and Uses of |
| | | |Hyocyamus |
|6 |20 minutes |Presentation |Natural Sources and Uses of Coca |
|7 |05 minutes |Presentation |Key Points |
|8 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Objectives (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Tropane Alkaloids (20 minutes)
tropic or benzoic acid esters of tropine
with a common methylated nitrogen
o Tropane alkaloids are very closely related to each other
o Hyoscyamine
o Hyoscine
o Atropine
o Cocaine
in Erythroxylaceae family)
STEP 3: Natural Sources and Uses of Stramonium (20 minutes)
o Stramonium is defined as dried leaves and flowering tops of Datura
stramonium and its varieties, family Solanaceae
o Its synonyms are thornapple, jimson or Jamestown weed
o Drug is required to contain not less than 0.25% of alkaloid calculated
as hyocyamine
o Drug is widely distributed in Africa, Germany, France, Hungary
o Adulterant: Solanum nigrum
o Allied Drugs are Datura inoxia, Datura metel and Datura sanguinea
o Contain 0.2 – 0.45% alkaloids, the major alkaloids are;
o Hyoscyamine and hyoscine are found in the ration 2:1 (hyoscyamine:
hyoscine)
o Younger plants contain hyoscine, atropine is little and is formed from
racemization of hyoscyamine
o These alkaloids test positive for Vitali-Morin test
o Hyoscyamine is used to treat urinary tract disorders
o It is used to treat spasms of the bladder
o Hyoscyamine preparations are also used as antispasmodics in the therapy
of peptic ulcers
o Hyoscine hydrobromide is used in pre-operative medication 30 – 60
minutes before induction of anaesthesia
o Hyoscine butylbromide used in irritable bowel syndrome to relief pain
due to abdominal cramps
o It is also used in dysmenorrhea
STEP 4: Natural Sources and Uses of Belladonna (25 minutes)
o Consist of the dried leaves and flowering tops of Atropa
belladonna
hyoscyamine
o Adulterant: Phytolacca dodecandra
o Allied drugs are Indian belladonna and Atropa acuminata
o Contains 0.3 – 0.6% of Tropane alkaloids, the chief of which is
hyoscyamine
o Belladonin
methylpyrroline are present
o Atropine
(asthma and colic)
o Hyoscine
o Atropine and Hyoscine
o Belladonna leaves are used for internal preparations
o Used as sedative, antispasmodic and to check secretions
o Roots are used for external preparations
o Atropine is indicated in organophosphates and carbamate
insecticides poisoning
o It produces mydriatic effect by paralyzing the iris and the
ciliary muscles
o Is it used as an antispasmodic to lessen smooth muscle
spasm/griping
o Used to treat some types of arrhythmias
STEP 5: Natural Sources and Uses of Hyocyamus (20 minutes)
o Hyoscyamus leaf consists of the dried leaves or dried leaves and
flowering tops of Hyoscyamus niger, family Solanaceae
o Common name: Henbane
o Tropane alkaloids mainly:
o Allied Drugs are Hyoscyamus albus, Hyosycamus muticus, Hyoscyamus
pusillus, Hyoscyamus aureus
o Resembles belladonna and stramonium in action but weaker
stimulation
o Used to relieve spasm of the urinary tract
o Used as a sedative
o Used as an expectorant
o Anti-asthmatic
STEP 6: Natural Sources and Uses of Coca (20 minutes)
o Coca is derived from dried leaves of Erythroxylum coca (Bolivian or
Huanuco) and E. truxillense (Peruvian or Truxillo), cultivated in Peru,
Bolivia, Colombia and Indonesia, family Erythroxylaceae
very early times
o Constituents
cocaine, cinnamylcocaine and α-truxilline are the most important.
commercial varieties
o Uses
STEP 6: Key Points (5 minutes)
belladonna
stramonium and its varieties
flowering tops of Hyoscyamus niger
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 21: Lobelia and Tobacco
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |45 minutes |Buzzing |Natural Sources and Uses of |
| | |Presentation |lobelia and Tobacco |
|3 |05 minutes |Presentation |Key Points |
|4 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Natural Sources and Uses of Lobelia and Tobacco (45 minutes)
o Lobelia consists of the dried aerial parts of Lobelia inflata
o Common Names: Lobelia, Indian Tobacco
o The plant was traditionally used by the Native Americans for asthma
o Constituents
1988, not less than 0.25%), the most important of which is lobeline
o Uses
new-born infants
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What is tobacco? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not|
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Tobacco consists of dried leaves of Nicotiana tobacum, family
Solanaceae
o Tobacco is also known as Tumbakhu
o Constituents
o Uses
STEP 3: Key Points (5 minutes)
STEP 4: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 22: Quinoline Alkaloids
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |10 minutes |Presentation |Definition of Quinoline |
| | | |Alkaloids |
|3 |25 minutes |Presentation |Natural Sources and Uses of |
| | | |Cinchona |
|4 |05 minutes |Presentation |Key Points |
|5 |05 minutes |Presentation |Evaluation |
|6 |10minutes |Presentation |Assignment |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning objectives and clarify
ASK students if they have any questions before continuing.
STEP 2: Definition of Quinoline Alkaloids (10 minutes)
of Cinchona species
cinchonidine
the tree, age, and method of bark collection.
STEP 3: Natural Sources and Uses of Cinchona (25 minutes)
o Cinchona bark consist of dried bark of the stem or root of Cinchona
succirubra, Cinchona ledgeriana, Cinchona officinalis and Cinchona
calisaya
o Chinchona belongs to the family Rubiaceae
o The plants are trees indigenous to Colombia Equador, Peru and Bolivia
and are cultivated in Indonesia, India and Tanzania
o There are over 36 known species and hybrids of cinchona
o Contains quinoline alkaloids, the principal quinoline alkaloid are
quinine and quinidine
o Other quinoline alkaloids are quinicine, cinchonicine, cinchotannic
acid and anthraquinones
|Activity: Small Group Discussion (15 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
| |
|What are the uses of Quinine and Quinidine? |
| |
|ALLOW students to discuss for 10 minutes |
| |
|ALLOW few groups to present and the rest to add points not mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
o Bitter tonic and stomachic (cinchona extract)
o Used as gargles (tannins in bark – astringent)
o Treatment of malaria
o Prophylaxis of cardiac arrhythmias
o Treatment of atrial fibrillation (quinidine)
STEP 4: Key Points (5 minutes)
the bark of Cinchona species
succirubra, Cinchona ledgeriana, Cinchona officinalis and Cinchona
calisaya
of malaria
STEP 5: Evaluation (5 minutes)
STEP 6: Assignment (10 minutes)
|Activity: Take home Assignment (10 minutes) |
| |
|DIVIDE students in groups or individual. |
| |
|ASK the students to work on the following assignment |
| |
|What is cinchonism? |
|List the sign and symptoms of cinchonism |
| |
|ALLOCATE time for students to do the assignment and submit |
| |
|REFER students to recommended references |
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 23: Isoquinoline Alkaloids
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |10 minutes |Presentation |Definition of Isoquinoline |
| | | |Alkaloids |
|3 |15 minutes |Buzzing |Natural Sources and Uses of Opium |
| | |Presentation | |
|4 |10 minutes |Presentation |Natural Sources and Uses of Curare|
|5 |10 minutes |Presentation |Natural Sources and Uses of |
| | | |Ipecacuanha |
|6 |05 minutes |Presentation |Key Points |
|7 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Definition of Isoquinoline Alkaloids (10 minutes)
and ipecacuanha
in their pharmacological actions
and method of bark collection
STEP 3: Natural Sources Uses of Opium (15 minutes)
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What is opium? |
| |
|ALLOW few pairs to respond and let other pairs to add on points |
|not mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Opium (raw opium) is the latex obtained by incision from the unripe
capsules of Papaver somniferum, family papaveraceae
o It is dried partially by spontaneous evaporation and partly by
artificial heat
o It is commercially known as Indian opium.
o According to the BP, opium is intended only as a starting point for the
manufacture of galenicals, and should not be dispensed as such.
o There are 6 main alkaloids produced by opium;
o Opium and Morphine are used to relieve pain, as hypnotic, and for
decreasing metabolism
o Opium
to morphine (e.g. in diarrhoea).
o Codeine
STEP 4: Natural Sources and Uses of Curare (10 minutes)
o Curare refers to various South America arrow poisons extracts obtained
from members of Menispermaceae (Stephania) and Loganiaceae
(Chondrodendron tomentosum)
o There are three kinds of curare depending on their containers and
chemical characteristics;
o Pot-curare
o Tubocurarine
o Curarine
o Tubocurarine chloride is used to produce muscular relaxation in
surgical operations and neurological conditions
STEP 5: Natural Sources and Uses of Ipecacuahnha (10 minutes)
(Brazilian ipec) or Cèphalis acuminata (Costa Rica ipecac), family
Rubiaceae
o Emetine (60-75%)
o Cephaeline,
o Psychotrine
o Psychotrine methyl ether
o Ipecacuanhin
o Emetamine
o Psychotrine methylether
o Ipecoside (glycoside)
ipecacuanhic acid) ipecoside, starch and calcium oxalate
o Expectorant
o Emetic
o Amoebic Dysentry
o Emetine is more expectorant and less emetic in action than
cephaeline
o Psychotrine:
o Selective HIV inhibitors (study could lead to therapeutically
useful agents)
STEP 6: Key Points (5 minutes)
from opium and ipecacuanha
capsules of Papaver somniferum, family papaveraceae
plants
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 24: Indole and Imidazole Alkaloids
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |15 minutes |Presentation |Natural Sources and Uses of |
| | | |Pilocarpus |
|3 |15 minutes |Presentation |Natural Source and Uses of Vinca |
| | |Buzzing |Alkaloids |
|4 |15 minutes |Presentation |Natural Source and Uses of Ergot |
| | | |Alkaloids |
|5 |15 minutes |Presentation |Natural Source and Uses of Nux |
| | | |Vomica |
|6 |15 minutes |Presentation |Natural Source and Uses of Calabar|
| | | |Beans |
|7 |15 minutes |Presentation |Natural Source and Uses of |
| | | |Rauwolfia |
|8 |15 minutes |Presentation |Natural Source and Uses of Yohimbe|
| | | |Bark |
|9 |05 minutes |Presentation |Key Points |
|10 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Natural Sources and Uses of Pilocarpus (15 minutes)
o Pilocarpus consists of imidazole alkaloids obtained from leaves of
closely related species of Pilocarpus jaborandi and other species of
the genus Pilocarpus, family Rutaceae
o It is also known as Jaborandi
o Pilocarpine
o Isopilocarpine
o Pilocarpidine
o Pilosine
o Pseudopilocarpine
o Isopilosine
o Used in form of Pilocarpine Hydrochloride
o It is a physiological antagonist of Atropine
o Used in ophthalmic practices e.g. treatment of glaucoma
o Causes contraction of pupil of the eye
STEP 3: Natural Source and Uses of Vinca Alkaloids (15 minutes)
o Vinca alkaloids are oncolytic indoline alkaloids obtained from dried
whole plant of Catharanthus roseus, family Apocynaceae
o Leurocristine (vincristine)
o Vincaleukoblastine (vinblastine)
by microbial N-demethylation using Streptomyces albogriseolus
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What are uses of Vinca Alkaloids? |
| |
|ALLOW few pairs to respond and let other pairs to add on points |
|not mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Vinblastine – treatment of generalized Hodgkin’s disease, lymphocytic
lymphoma, histiocytic lymphoma, advanced testicular carcinoma, kaposi’s
sarcoma, choriocarcinoma and breast cancer unresponsive to therapy
o Vincristine – treatment of acute lymphocytic leukemia in combination
therapy in Hodgkin’s disease, ymphosarcoma, reticulum cell sarcoma,
neuroblastoma and Wilm’s tumour
STEP 4: Natural Sources and Uses of Ergot Alkaloids (15 minutes)
o Ergot is the dried sclerotium of a fungus Claviceps purpurea, arising
in the ovary of the rye, Secale cereal, family Hypocreaceae
o The sclerotium arises in the ovary of the rye – secale cereale
o Contains water soluble and water insoluble alkaloids
o Water soluble:
o Water insoluble:
o Derivatives of lysergic acid
o Ergometrine is used to control postpartum haemorrhage
o Ergometrine produces oxytocic effects
o Ergotamine and semi-synthetic dihydrohydroxy ergotamine are employed as
specific analgesic for treatment of migraine (caffeine enhances
absorption)
o Lysergic acid derivative, LSD is a psychomimetic (a potent
hallucinogen) controlled under narcotics
STEP 5: Natural Sources and Uses of Nux vomica (15 minutes)
o Nux vomica are dried, ripe seeds of Strychnous nux-vomica, family
Loganiaceae
o The Main indole alkaloids are;
brucine is in the outer layers
isostrychnine
o The drug also contains 3% fixed oils, glycoside – loganin
o It stimulates peristalsis in chronic constipation and is often combined
with cascara and other laxatives
o Bitter stomachich and tonic (increases gastric juice to improve
appetite and digestion)
o Improves the pulse and raises blood pressure
o At higher doses it is a lethal poison
o Brucine is used commercially as an alcohol denaturant (as it is
extremely bitter)
STEP 6: Natural Sources and Uses of Calabar Beans (15 minutes)
o Calabar beans are dried seeds of Physostigma venonosum, family
Leguminosae
o The seeds are extremely hard
o Physostigmine,
o Isophysostigmine,
o Physovenine
o Eserinmine
o Geneserine
o A reversible inhibitor of cholinesterase thus enhancing the effect of
endogenous Acetylcholine
o It is used systematically as an antidote for atropine poisoning and
other anticholinergic drugs
o Used in ophthalmology to contract the pupil, to combat mydriasis
o It is used in the treatment of glaucoma
the aqueous humour
STEP 7: Natural Sources and Uses of Rauwolfia (15 minutes)
o Rauwolfia consist of dried rhizome and roots of Rauwolfia serpentine,
family Apocynaceae
o The drug is commonly known as Indian snake root
o The African rauwolfia consists of dried roots of Rauwolfia vomitoria
widely distributed in tropical Africa
o Major alkaloids are:
o Other Alkaloids include:
o Other constituents:
sugars
o African rauwolfia contains mainly Reserpine and Rescinnamine
o It is used as a centrally acting anti-hypertensive agent (reserpine)
antihypertensive agents due to its major side effect –suicidal
depression
STEP 8: Natural Sources and Uses of Yohimbe Bark (15 minutes)
o Consists of dried bark of Pausinystalia yohimbe (family Rubiaceae)
o Grows in Cameroon
o Chief constituent is Yohimbine
o As an aphrodisiac agent
o Symptomatic treatment of erectly dysfunction
STEP 9: Key Points (5 minutes)
closely related species of Pilocarpus jaborandi and other species of the
genus Pilocarpus
whole plant of Catharanthus roseus
the ovary of the rye, Secale cereal
STEP 10: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 25: Purine Alkaloids
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |15 minutes |Presentation |Introduction to Purine Alkaloids |
|3 |30 minutes |Presentation/ |Natural Sources and Uses of |
| | |Brainstorming |Alkaloids |
|4 |05 minutes |Presentation |Key Points |
|5 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Purine Alkaloids (15 minutes)
solvents
tea leaves and guarana seeds), theobromine (Theobroma cocao) and
theophylline (tea leaves and cola nuts)
purine alkaloids
diuretic action.
Caffeine
effectively than caffeine or theobromine
STEP 3: Natural Sources and Uses of Alkaloids (30 minutes)
o Cocoa consists of seeds of Theobroma cacao, family sterculiaceae
o Cocoa is produced in South America (Ecuador, Columbia, Venezuela), West
Indies and West Africa (Nigeria, Ghana and Java)
o Cocoa kernels contain 0.9 – 3% theobromine and the husk 0.19- 2.98% of
this alkaloid
o The seed also contains 0.05 – 0.36% caffeine, cocoa fat/butter,
condensed tannins and volatile compounds
o Main constituents are Theobromine and Theophyllline
o Uses
sensitivity to CO2
bronchial asthma
bronchitis and emphysema
o Coffee consists of seeds of coffea arabica and other species of coffee,
family rubiaceae
o Constituents:
decreases the sensation of fatigue. At high doses caffeine induces
nervousness, insomnia and tremors.
o Another source of caffeine is Tea, which consists of prepared leaves of
Thea sinensis/Camellia sinensis
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the uses of Caffeine? |
| |
|ALLOW few students to respond |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
o Uses
antipyretics and analgesics, cold and flu medication (increases the
intestinal absorption of some of these drugs or to counteract
drowsiness)
and “energizing” beverages
STEP 4: Key Points (5 minutes)
STEP 5: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 26: Proto alkaloids
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Objectives |
|2 |10 minutes |Brainstorming |Introduction to Proto-alkaloids |
| | |Presentation | |
|3 |35 minutes |Presentation |Natural Sources of Proto-alkaloids|
|4 |05 minutes |Presentation |Key Points |
|5 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Proto-alkaloids (10 minutes)
|Activity: Brainstorming (3 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the characteristics of proto-alkaloids? |
| |
|ALLOW few students to respond |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
vasoconstriction
STEP 3: Natural Sources of Proto-alkaloids (35 minutes)
o Ephedra is a protoalkaloid obtained from dried young stems of Ephedra
gerardiana and Ephedra nebrodensis, family Ephedraceeae
o Its synonym is Ma-Huang
o Constituents
o Uses
o Colchicum is the dried ripe seeds of Colchicum luteum and Colchicum
autumnale.
o Family: Liliaceae
o Constituents
o Uses
(multiplication of the chromosomes in a cell nucleus) in
horticulture and cultivation of medicinal plants
STEP 4: Key Points (5 minutes)
gerardiana and Ephedra nebrodensis
hay fever medications
STEP 5: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 27: Introduction of Glycosides
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 Minutes |Presentation |Introduction, Learning Tasks |
|2 |15 Minutes |Presentation |Meaning and Characteristics of |
| | | |Glycosides |
|3 |30 Minutes |Presentation |Classification of Glycosides |
|4 |05 Minutes |Presentation |Key Points |
| 5|05 Minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Meaning and Characteristics of Glycosides (15 minutes)
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What is a glycoside? |
| |
|ALLOW few students to respond |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
← Glycosides are molecules in which a sugar part (sugar moiety called the
glycone) is bound to a non-sugar part (non-sugar moiety called the
aglycone) joined together by glycosidic bond
← Glycosides play numerous important roles in living organisms
← Many plants store important chemicals in the form of inactive
glycosides
← Many such plant glycosides are used as medications
← Characteristics of glycosides include;
o Glycosides are soluble in water but insoluble in organic solvents
solvents
solvents
o Glycosides are ccolorless (except flavonoid- yellow, anthraquinone-red
or orange)
o They are solid, amorphous and nonvolatile
o They give a positive reaction with Molisch's and Fehling's solution
test (after hydrolysis).
o Most glycosides have bitter taste
o They are oodorless except saponin (glycyrrhizin).
o Glycosides with lots of sugars have increased solubility in water
o Glycosides hydrolyzed by using mineral acids and temperature or by
using enzymes
STEP 3: Classification of Glycosides (30 minutes)
← Glycosides can be classified base on the following basis:
o Based on therapeutic effects
o Based on glycone moiety
o Based on glycosidic linkage/bond
o Based on chemical nature of the aglycone
STEP 4: Key Points (5 minutes)
← Glycosides are made up of a glycone and aglycone moieties
← Glycosides are water soluble
← Glycosides are hydrolysed by acids, bases and acids into their
components
STEP 5: Evaluation (5 minutes)
← What is a glycoside?
← What are characteristics of glycosides
← What are the classes of glycosides
References:
Gleadow, RM; Møller, BL (2014). "Cyanogenic glycosides: synthesis,
physiology, and phenotypic plasticity". Annual Review of Plant
Biology. 65: 155–85. doi:10.1146/annurev-arplant-050213-
040027. PMID 24579992.
Sun, Hong-Xiang; Xie, Yong; Ye, Yi-Ping (2009). "Advances in saponin-based
adjuvants". Vaccine. 27 (12): 1787–1796. doi:10.1016/j.vaccine.01.091.
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 28: Cardiac Glycosides
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |5 minutes |Presentation |Introduction, Learning Objectives |
|2 |30 minutes |Presentation |Properties of Cardiac Glycosides |
|3 |60 minutes |Presentation |Sources, Constituents and Uses of |
| | | |Selected Cardiac Glycosides |
|4 |15 minutes |Presentation |Mechanism of Action for Cardiac |
| | | |Glycosides |
|5 |5 minutes |Presentation |Key Points |
|6 |5 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Properties of Cardiac Glycosides (30 minutes)
cardiac muscles (positive ionotropic effect on the heart)
o consists of one or more monosaccharide units
o contains a steroid nucleus and a lactone ring
o has steroidal nucleus
o is always attached at C-3 position of aglycone part
o Cardenolides
o Bufadienolides
from toads
o Amorphous
o Odorless
o Bitter tasting
o Soluble in water
o Insoluble in organic solvents
o Very toxic compounds
o Keller Kilian test
colour
o Legal test
red to pink colour
STEP 3: Sources, Constituents and Uses of Selected Cardiac Glycosides (60
minutes)
o Definition
purpurea (common name purple fox glove), family Scrophulariaceae
o Constituents
terminal glucose to produce;
o D. lanata produces
by Digitalis purpurea
o Uses of digitalis
o Definition
which the membrenous outer scales have been removed (family
Liliaceae)
o Constituents
o Which is crystalline in form
o An amorphous mixture of glycosides
other glycosides
o Uses
o Definition
hispidus, family apocynaceae
o Constituents
cymarin
o Composed of the genin strophanthidin
o Coupled to a trissaccharide with cymarose, β-glucose
and α-glucose
o Are short-acting cardiac glycosides
STEP 4: Mechanism of Action for Cardiac Glycosides (15 minutes)
o Inhibition of Na+/K+ ATPase of the cardiac cells, which increases the
intracellular Na+ ions levels
o The increased Na+ ion levels within the cardiac cells inhibits the
Na+/Ca2+ exchanger, this in turn, results in increased concentrations
of Ca2+ within the cardiac cells
o The increased intracellular Ca2+ increases contractile force of the
cardiac muscles
[pic]
STEP 5: Key Points (5 minutes)
on cardiac muscles
purpurea
including congestive heart failure (CHF), arrhythmias and atrial
fibrillations
STEP 10: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
.
Session 29: Anthraquinone Glycosides
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |5 minutes |Presentation |Introduction, Learning Tasks |
|2 |20 minutes |Presentation |Introduction to Anthraquinone |
| | | |Glycosides |
|3 |20 minutes |Presentation |Natural Sources and Uses of Senna |
|4 |20 minutes |Presentation |Natural Sources and Uses of |
| | | |Cascara |
|5 |25 minutes |Buzzing |Natural Sources and Uses of Aloe |
| | |Presentation | |
|6 |20 minutes |Presentation |Natural Sources and Uses of |
| | | |Rhubarb |
|7 |5 minutes |Presentation |Key Points |
|8 |5 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Anthraquinone Glycosides (20 minutes)
structure and attached to glycone portion
colon and stimulate the secretion of water and electrolytes
STEP 3: Natural Sources and Uses of Senna (20 minutes)
o Senna consists of the dried leaflets of Casssia senna (Alexandrian
senna) and Cassia angustifolia (Tinnevelly senna), family Fabaceae
(Leguminosae)
o Cassia senna is indigenous to tropical Africa and is cultivated in
Sudan
o Cassia angustifolia is indigenous to Somaliland, Arabia, Pujab and is
cultivated in South India
o The basic constituents of senna are the anthraquinone glycosides;
o Other constituents include;
o Laxative
occasional use
action upon the intestinal wall
STEP 4: Natural Sources and Uses of Cascara (20 minutes)
o Cascara consists of the dried bark of Rhamnus purshianus, family
Rhamnaceae
o Requires long storage to destroy compounds called anthrones in the
fresh bark, which cause vomiting
o Cascaroside A
o Cascaroside B
o Cascaroside C
o Cascaroside D
o Tannins
o Volatile oils
o Purgative
from dry extract
STEP 5: Natural Sources and Uses of Aloe (25 minutes)
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What are Aloes? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not|
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Aloes consists of a solid residue obtained by evaporating the liquid
which drains from the transversely cut leaves of various species of
aloe, family Liliaceae
o The species that yield aloe are:
o The most important constituents of Aloes are the two Aloins:
o Other constituents are resins and Aloe-emodin
o Stimulant purgative
o Anthelminthic
STEP 6: Natural Sources and Uses of Rhubarb (20 minutes)
o Rhubarb consists of the dried underground parts of Rheum palmatum or R.
officinale, family Polygonaceae
o Rhubarb contains free anthraquinone
o Rhubarb can be used as a strong laxative
o Rhubarb has an astringent effect on the mucous membranes of the mouth
and the nasal cavity
STEP 7: Key Points (5 minutes)
anthracene ring structure and attached to glycone portion
rhubarb, senna, aloes
STEP 8: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 30: Introduction to Volatile Oils and Resins
Total Session Time: 120 minutes
Prerequisites
None
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |25 minutes |Presentation |Characteristics of Volatile Oils |
| | | |and Resins |
|3 |20 minutes |Presentation |Composition of Volatile Oils |
| | |Brainstorm | |
|4 |15 minutes |Presentation |Classification of Volatile Oils |
|5 |30 minutes |Presentation |Extraction of Volatile Oils |
|6 |15 minutes |Presentation |Therapeutic Uses of Volatile Oils |
| | |Small group | |
|7 |05 minutes |Presentation |Key Points |
| 8|05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Characteristics of Volatile Oils (25 minutes)
odoriferous liquids that entirely or almost entirely volatile in steam
a distinctive scent, or essence of the plant
properties in common, beyond conveying characteristic fragrances
(Essential oils should not be confused with essential fatty acids)
mainly used in perfumes and flavourings
o They evaporate under atmospheric pressure at room temperature
o They are soluble in alcohol and other organic solvents
o They are insoluble in water
o They have high refractive index
o They are optically active
o Most of them are colourless or pale yellow
o They are odoriferous
o They are sensitive to air (resinify on exposure to air)
o Most of them are terpenoid in nature
o Resins are hydrocarbon secretions of many plants, more or less solid
amorphous products of complex chemical nature
o Resin produced by most plants is a viscous liquid
o Resins may be associated with volatile oils or gum or may be found in
irregular masses which are insoluble in water but soluble in alcohol
o Resins, oleoresins (resins associated with oils) and gum resins (resins
associated with gums) are usually secreted into secretory cavities or
ducts
STEP 3: Composition of Volatile Oils (20 minutes)
|Activity: Brainstorming (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
| |
|What is composition of volatile oils? |
| |
|ALLOW students to discuss for 15 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
sesqui terpenes)
o Terpenoids are hydroxycarbons of plant origin with general formula
(C5H8) n i.e. isoprene units
o Terpenoids are naturally occurring and give plants and flowers their
fragrance
contain principally aromatic (benzene) derivatives mixed with terpenes
oil and mustard oil), volatile oils are mixtures of hydrocarbons and
oxygenated compounds derived from these hydrocarbons
only limited amount of oxygenated constituents are present, other
volatile oils (e.g. Oil of cloves) the bulk of the oil consists of
oxygenated compounds
STEP 4: Classification of Volatile Oils (15 minutes)
o Concretes
materials and then the solvent removed by gent heating e.g. jasmine
oil
o Pomades
o Resinoids
fragrance
o Absolutes
o Hydrocarbon volatile oils e.g. turpentine
o Alcoholic volatile oils e.g. peppermint, cardamom and coriander oils
o Aldehydic volatile oils e.g. lemon oil, orange oil, cinnamon
o Ketonic volatile oils e.g. camphor, spearmint oils
o Phenolic volatile oils e.g. clove, anise, nutmeg oils
o Phenolic ether volatile oils e.g. fennel oil
o Oxide volatile oils e.g. rosemary oil
STEP 5: Extraction of Volatile Oils (30 minutes)
o Distillation
destroyed by boiling e.g. turpentine oil)
by direct heating e.g. clove and cinnamon oils)
spearmint oils)
o Scarification
o Soxhlet extraction
o Solvent extraction
o Extraction by volatile solvents
o Uses light petroleum followed by distillation
o Choice of a suitable method is very important
STEP 6: Therapeutic Uses of Volatile Oils (15 minutes)
|Activity: Small Group Discussion (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
| |
|List down the therapeutic uses of volatile oils? |
| |
|ALLOW students to discuss for 15 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
o Topically as irritants
o Used for improving circulation
o Used for preparation of lotions and liniments
o Used as carminative agents
o Used as local anaesthetic
o Used for respiratory problems e.g. cough, asthma
o Some volatile oils have antibacterial and antifungal effects
o Some volatile oils have anthelminthic activity
STEP 7: Key Points (5 minutes)
almost entirely volatile in steam
sesqui terpenes
methods of extraction
STEP 8: Evaluation (5 Minutes)
References
Oxford English Dictionary , 2014),"essential oil". (online, American
English ed.). Archived from the original, Retrieved 2014-07-21.
Ryman, Daniele (1984). The Aromatherapy Handbook: The Secret Healing Power
of Essential Oils. Century Publishing CO. Ltd. pp. Chapter 3.
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 31: Alcoholic and Hydrocarbon Volatile Oils
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |25 minutes |Presentation |Peppermint Oil |
|3 |25 minutes |Presentation |Cardamom Oil |
|4 |25 minutes |Presentation |Coriander Oil |
| | |Buzzing | |
|5 |25 minutes |Presentation |Turpentine Oil |
|7 |10 minutes |Presentation |Key Points |
|8 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Peppermint Oil (25 minutes)
o Peppermint oil is an oil that has a strong peppermint odour and
produces a cooling sensation in the mouth obtained by distillation
from dried leaves and flowering tops of Mentha piperita L. (Fam.
Labiatae)
o Menthol
o Menthone
o Methyl acetate
o The official oil is required to contain 4.5 – 10% of esters calculated
as methyl acetate, not less than 44% of free alcohols calculated as
menthol and 15-32% of ketones calculated as menthone
o Peppermint, and is used chiefly as a flavouring agent and as a
carminative
o Treatment of common cold, cough, inflammation of the mouth and throat,
sinus infections, and respiratory infections
o Treatment of digestive problems including heartburn, nausea, vomiting,
morning sickness, irritable bowel syndrome, cramps of the upper
gastrointestinal tract and bile ducts, upset stomach, diarrhea,
bacterial overgrowth of the small intestine, and gas
o Peppermint oil is also used for headache, muscle pain, nerve pain,
toothache, inflammation of the mouth, joint conditions, itchiness (the
oil is a counterirritant), allergic rash, bacterial and viral
infections, relaxing the colon during barium enemas, and for repelling
mosquitoes
o Used as a flavouring agent
o It has carminative action
STEP 3: Cardamom Oil (25 minutes)
o Cardamom oils is an oil obtained from dried ripened seeds of Elettaria
cardamomum, family Zingiberaceae
o Terpinol
o Terpinyl acetate
o Borneol
o Fixed oils
o Flavouring agent
o Carminative
o Gastrointestinal stimulant
o Used in dyspepsia and flatulence
STEP 4: Coriander Oil (25 minutes)
o Coriander oil is an oil obtained from fresh leaves and dried seeds of
Coriander sativum, family Umbeliferae
o d-pinene
o fixed oil
o Calcium oxalate
|Activity: Buzzing (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
| |
|What are the uses of coriander oils? |
| |
|ALLOW students to discuss for 5 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
o Flavouring agent
o Carminative agent
o Stimulant
STEP 5: Turpentine Oil (25 minutes)
o Turpentine oil is an oil obtained by distilation from Pinus palustris
and other species of Pinus e.g. Pinus longifolia, family Pinaceae
o The oil is colourless with characteristic odour and highly flammable
o The oil is re-distilled with NaOH to form rectified oil of turpentine
o ( and (- Pinene
o Methylcarbachol
o Camphene
o Counter irritant
o Local irritant
o Rectified oil is used internally as a diuretic, urinary antiseptic,
anthelminthic and expectorant
STEP 7: Key Points (10 minutes)
cooling sensation in the mouth obtained by distillation from dried leaves
and flowering tops of Mentha piperita
carminative
and other species of Pinus belonging to family Pinaceae
STEP 8: Evaluation (5 minutes)
← What are the uses of peppermint oil?
← What is the use of coriander oil?
← What is the source of cardamom oil?
References
Ryman, Daniele (1984). The Aromatherapy Handbook: The Secret Healing Power
of Essential Oils. Century Publishing CO. Ltd. pp. Chapter 3.
Soares, I., Loreto, É, Rossato, L., Mario, D., Venturini, T., Baldissera,
F., Alves, S. (2015). In vitro activity of essential oils extracted
from condiments against fluconazole-resistant and -sensitive Candida
glabrata. Journal De Mycologie Médicale,25(3), 213-217. doi:10.1016/j.
mycmed.2015.06.003
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 32: Ketonic and Aldehydic Volatile Oils
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Task |
|2 |20 minutes |Presentation |Spearmint Oil |
|3 |20 minutes |Presentation |Camphor Oil |
|4 |20 minutes |Buzzing |Lemon Oil |
| | |Presentation | |
|5 |20 minutes |Presentation |Orange Oil |
|6 |20 minutes |Presentation |Cinnamon Oil |
|7 |10 minutes |Presentation |Key Points |
|8 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Spearmint Oil (20 minutes)
o Spearmint oil is an aromatic essential oil obtained by steam
distillation of the dry/fresh leaves and flowering tops of Mentha
spicata
o Carvone
o Limonene
o Phellandrenes
o Esters
o Official oil should contain not less than 55% of carvone
o As a carminative agent
o As a flavouring agents in pharmaceutical preparations and foods
STEP 3: Camphor Oil (20 minutes)
o Camphor is an oil obtained by distillation of wood of stem ad root of
Cinnamomum camphora
o Brown and yellow camphor oil has high safrol levels and are toxic and
carcinogenic
o Main constituents include α-pinene, camphene, β-pinene, sabinene,
phellandrene, limonene, geraniol, safrole, cinnamaldehyde, eugenol,
methyl cinnamate
o Analgesic
o Antidepressant
o Anti-inflammatory
o Antiseptic
o Diuretic, febrifuge, anti-hypertensive, insecticide, laxative,
rubefacient, stimulant and vermifuge
o It is also used in cosmetics
STEP 4: Lemon Oil (20 minutes)
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What is lemon oil? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not|
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Lemon oil is an oil obtained by expression from the fresh peel of the
fruits of Citrus limon
o Vitamin C
o Limonene
o Flavonoids
o Glycosides
o Citronellol
o Hisperidine
o Carminative
o Aromatic
o Flavouring agent
STEP 5: Orange Oil (20 minutes)
o Orange oil is an essential oil obtained by expression from the rind
(peels) of bitter orange (Citrus aurantium) and sweet orange (Citrus
sinensis) family Rutaceae
o Vitamin C
o α-pinene
o Sabinene
o Limonene
o Myrcene
o Linanool
o citronellal
o Neral
o Geranial
o Calcium oxalate
o Carminative
o Flavouring agent
o Antiseptic
o Anti-depressant
o Antispasmodic
o Anti-inflammatory agent
o Carminative agent
o Cholagogoue
o Diuretic
o Sedative
o Tonic
STEP 6: Cinnamon Oil (20 minutes)
o Cinnamon oil is an oil obtained from dried inner bark of the shoot of
Cinnamomum loureirii, family Lauraceae
from hard wood as quill
o Constituents
o Uses
STEP 7: Key Points (10 minutes)
of the aerial structures of Mentha spicata
(peels) of an orange fruit, Citrus sinensis family Rutaceae
Cinnamomum camphora
STEP 8: Evaluation (5 minutes)
← What are the uses of lemon oil?
← What is orange oil?
← What are therapeutic uses of cinnamon oil
References
Ryman, Daniele (1984). The Aromatherapy Handbook: The Secret Healing Power
of Essential Oils. Century Publishing CO. Ltd. pp. Chapter 3.
Soares, I., Loreto, É, Rossato, L., Mario, D., Venturini, T., Baldissera,
F., Alves, S. (2015). In vitro activity of essential oils extracted
from condiments against fluconazole-resistant and -sensitive Candida
glabrata. Journal De Mycologie Médicale,25(3), 213-217.
doi:10.1016/j.mycmed.2015.06.003
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 33: Phenolic ether, Phenolic, Oxide and Ester Volatile Oils
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Task |
|2 |15 minutes |Presentation |Fennel Oil |
|3 |15 minutes |Presentation |Anise Oil |
|4 |15 minutes |Presentation |Clove Oil |
| | |Buzzing | |
|5 |15 minutes |Presentation |Eucalyptus Oil |
|6 |15 minutes |Presentation |Lavender Oil |
|7 |15 minutes |Presentation |Rosemary Oil |
|8 |15 minutes |Presentation |Dill Oil |
| | |Brainstorming | |
|9 |05 minutes |Presentation |Key Points |
|10 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Fennel Oil (15 minutes)
o Fennel oil is an oil obtained from dried ripened seeds of Foeniculum
vulgare family Umbelliferae
o Anethole
o Fenchone
o Carminative
o Stimulant
o Flavouring agent
STEP 3: Anise Oil (15 minutes)
o Anise oil is an oil distilled from dried ripened fruit of Pimpenella
anisum, family Umbelliferae
o Anethole
o Safrole
o Fixed oils
o Carminative
o Stimulant
o Flavouring agent
STEP 4: Clove Oil (15 minutes)
o Clove oil is a colourless or pale yellow oil obtained by distillation
from dried flower buds of Eugenia caryophyllus (or Syzygium
aromaticum), family Myrtaceae
o The oil is sensitive to air
o Eugenol
o Acetyleugenol
o Gallotamic acid
o Carvacrol
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are uses of clove oil? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Stimulant
o Carminative
o Irritant
o Condiment
o Local anaesthetic
o Analgesic
o Antiseptic
o Flavouring agent
STEP 4: Eucalyptus Oil (15 minutes)
o Eucalyptus oil is an oil obtained by distilled from the fresh leaves of
Eucalyptus globlus, family Myrtaceae
o The oil is colourless or pale yellow with aromatic (camphoraceous)
odour
o Eucalyptol
o Cineol
o Resins
o Tannins
o Eucalyptic acid
o As an expectorant agent
o Rubefacient
o Antiseptic
o Decongestant
o Diaphoretic
STEP 5: Lavender Oil (15 minutes)
o Lavender oil is an oil obtained by steam distillation from flowering
tops of Lavandulla officinalis (Family Lamiaceae)
o The oil is colourless or pale yellow in colour with light fresh aroma
o α-pinene
o Limonene
o Linalyl acetate
o As an antiseptic agent
o Used to relieve tension, depression, panic hysteria and nervous
exhaustion
o Used for headache, migraines and insomnia
o Relives pain associated with rheumatism, arthritis, lumbago and muscles
o It is employed pharmaceutically in the anti-arthropod preparation of
Gamma Benzene Hexachloride
o Relives problems associated with gastrointestinal tract including
nausea, vomiting, colics and flatulence
STEP 6: Rosemary Oil (15 minutes)
o Rosemary oil is an oil obtained from flowering tops of Rosmarinus
officinalis (family Lamiaceae)
o Rosmarinic acid
o Camphor
o Caffeic acid
o Betulinic acid
o Rosmaridiphenol
o As an antioxidant
o Relief of gastrointestinal problems including heartburn, flatulence and
loss of appetite
o Used for gout, cough, headache, toothache, high blood pressure, and
reducing age-related memory loss (It is a memory enhancer)
o It is also used topically for preventing and treating baldness, eczema
and promotion of wound healing
o It is also used as an insect repellent
STEP 6: Dill Oil (15 minutes)
o Dill oil is an essential oil obtained by distillation from dried leaves
and seeds of Anethum graveolens, family Apiaceae
o The oil has a grass smell
o Carvone
o Limonene
o Carminative
o Flavouring agent
o Used with water to create dill water
STEP 7: Key Points (5 minutes)
of Lavandulla officinalis (Family Lamiaceae)
vulgare
officinalis
and seeds of Anethum graveolens
STEP 8: Evaluation (5 minutes)
← What is the chief constituent of clove oil?
← What are the constituents of dill oil?
← What is dill water?
References
Ryman, Daniele (1984). The Aromatherapy Handbook: The Secret Healing Power
of Essential Oils. Century Publishing CO. Ltd. pp. Chapter 3
Soares, I., Loreto, É, Rossato, L., Mario, D., Venturini, T., Baldissera,
F., Alves, S. (2015). In vitro activity of essential oils extracted
from condiments against fluconazole-resistant and -sensitive Candida
glabrata. Journal De Mycologie Médicale,25(3), 213-217.
doi:10.1016/j.mycmed.2015.06.003
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 34: Introduction to Fixed oils and Fats
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |5 minutes |Presentation |Introduction, Learning Tasks |
|2 |25 minutes |Presentation |Distribution and Characteristics |
| | |Brainstorming |of Fixed Oils and Fats |
|3 |25 minutes |Presentation |Extraction of Fixed Oils and Fats |
|4 |30 minutes |Presentation |Evaluation of Fixed Oils and Fats |
|5 | |Small group |Uses of Fixed Oils and Fats |
| |25 minutes |discussion | |
| | |Presentation | |
|6 |5 minutes |Presentation |Key Points |
|7 |5 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Distribution and Characteristics of Fixed Oils and Fats (25
minutes)
o Fixed oils and fats are lipids (esters) of long chain fatty acids and
alcohol
o Fixed oils and fats are widely distributed and occur in both vegetative
and reproductive structures
o They are found often in seeds, where they may replace the carbohydrate
as reserve food material
o They are also associated with protein reserves
o As lipids, fats form an essential component of biological membranes
o Fixed oils occur in plant materials as small highly refractive drops
o Oil globules associated with aleurone grains can be well seen in
cotyledons of linseed and colocynth, and in the endosperm of nux vomica
o Fixed oils and fats are soluble in ether-alcohol, few exceptions such
as castor oil are sparingly soluble in alcohol
o At ordinary temperature fats are semisolid/ solid and fixed oils are
liquid at normal temperature
o Most vegetable oils are liquid at ordinary temperature but animal fats
are solid
o There are exceptions, e.g. coconut oil, in temperate temperature is
solid and tropic temperature it is liquid oil
o They are esters of long chain fatty acids and alcohols or closely
related derivatives of alcohols
o The fatty acids forming the oils can be saturated or unsaturated
o Most animal products contain saturated fatty acids while most plant
products contain unsaturated fatty acids
o A special group of unsaturated fatty acids (the ω-3fatty acids) are
vital to human health as they lower cholesterol levels in the body
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the chemical tests for fixed oils and fats? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
Osmic acid
strong solution of ammonia slowly saponifies fixed oils and fats
resulting in observable characteristic soap crystals
STEP 3: Extraction of Fixed Oils and Fats (25 minutes)
depends on the botanical source of the oil
o Decortication –crushing to remove seed coat
o Expression – kernels are placed onto the oil presses and subjected to
pressure with or without application of heat
o Filtration – separates oil from other matters and may be done several
times to attain purity.
o Steaming -at high temperature to inactivate proteins and other
materials e.g. castor oil requires steaming
o Expression (cold or hot)
o Solvent extraction
STEP 4: Evaluation of Fixed Oils and Fats (30 minutes)
o Physical standards include;
o Acid Value
o Saponification Value
o Iodine value
o Ester value
STEP 5: Uses of Fixed Oils and Fats (25 minutes)
|Activity: Small Group Discussion (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
|What are the uses of fixed oils and fats? |
| |
|ALLOW students to discuss for 10 minutes |
| |
|ALLOW few groups to present and the rest to add points not mentioned|
| |
| |
|CLARIFY and SUMMARIZE by using the contents below |
STEP 6: Key Points (5 minutes)
liquid at normal temperature
Osmic acid
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 35: Castor, Olive, Cod-liver and Peanut Oils
Total Session Time: 120 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Objectives |
|2 |30 minutes |Presentation |Natural Source, Constituents and |
| | |Buzzing |Uses of Castor Oil |
|3 |25 minutes |Presentation |Natural Source, Constituents and |
| | | |Uses of Olive Oil |
|4 |25 minutes |Presentation |Natural Source, Constituents and |
| | | |Uses of Cod-liver Oil |
|5 |25 minutes |Presentation |Natural Source, Constituents and |
| | |Brainstorming |Uses of Peanut Oil |
|6 |05 minutes |Presentation |Key Points |
|7 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Natural Source, Constituents and Uses of Castor Oil (30 minutes)
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What is Castor oil? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not |
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Castor oil is a monounsaturated fixed oil obtained from ripe seeds of
Ricinus communis, family Euphorbiaceae
o Castor seeds are decorticated and the kernels separated from the testa
and cold-expressed in hydraulic presses
o The oil is pale yellow or almost colorless, transparent
o The seeds contain 45-55% fixed oil, 20% protein, ricin (toxic
alkaloid), recinine and several enzymes e.g. lipase
o Stimulant cathartic for total colonic evacuation prior to surgery
o Emollient
o Employed in manufacture of soaps
o Hydrogenated oil is used as a stiffening agent in some pharmaceutical
formulations
STEP 3: Natural Source, Constituents and Uses of Olive Oil (25 minutes)
o Olive oil is a fixed oil obtained from the ripe fruit of Olea europoae
family Oleaceae
o The oil is an evergreen tree and fruits are drupes, purple when ripe
o Oil is pale yellow/light greenish yellow, slight odor, taste is bland
to faintly acrid
o Linoleic acid
o Oleic acid
o Palmitic acid and
o Stearic acid
o Externally as demulcent & emollient agent
o Laxatives
o Used as a purgative administered after food poisoning
STEP 4: Natural Source, Constituents and Uses of Cod-liver Oil (25
minutes)
o Cod-liver oil is a fixed oil from the fresh livers of cod fish, Gadus
morrhua, family Gadidae
o The oil is a mixed triglyceride, mainly unsaturated C16-22 acids and
decahexanoic acid
o Omega 3 fatty acids
o Vitamin A
o Vitamin D
o Prevention and cure of rickets
o Important source of vitamin A and D
o For treatment of pain and stiffness of joint in arthritis
STEP 5: Natural Source, Constituents and Uses of Peanut Oil (25 minutes)
o Peanut oil or arachis oil is a fixed oil obtained from seeds of Arachis
hypogaea (Leguminosae)
o Seeds contain 40-50% oil
o Oleic acid 60%
o Linoleic acid 24%
o Palmitic acid 9%
o Arachidonic acid
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are the uses of Arachis oil? |
| |
|ALLOW few students to respond? |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
STEP 6: Key Points (5 minutes)
Ricinus communis
ripe fruit of Olea europoae
morrhua, and it is used as a supplement for vitamin A and D
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 36: Almond, Linseed, Coconut and Cottonseed Oils
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |15 minutes |Presentation |Natural Source, Constituents and |
| | |Brainstorming |Uses of Almond Oil |
|3 |10 minutes |Presentation |Natural Source, Constituents and |
| | | |Uses of Linseed Oil |
|4 |10 minutes |Presentation |Natural Source, Constituents and |
| | |Buzzing |Uses of Coconut Oil |
|5 |10 minutes |Presentation |Natural Source, Constituents and |
| | | |Uses of Cottonseed Oil |
|6 |05 minutes |Presentation |Key Points |
| 7|05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Natural Source, Constituents and Uses of Almond Oil (15 minutes)
o Almond oil is a fixed oil obtained by expression from kernels of Prunus
amygdalus, family Rosaceae Var dulcis (sweet almond) or P. amygdalus
Var amara (bitter almond)
o The oil is pale yellow liquid with a slight odour and bland, nutty
taste
o Oleic acid
o Linolenic acid
o Amygdalin (bitter almond)
o Vehicle in oily injections
o Laxative
o Volatile oils are flavouring agents
STEP 3: Natural Source, Constituents and Uses of Linseed Oil (10 minutes)
o Linseed oil (or flaxseed oil) is a fixed oil obtained from the dried,
ripe seed of Linum usitatissimum (flaxseed), family Linaceae
o Palmitic acid
o Stearic acid
o Alpha linoleic acid (ALA)
o Oleic acid
o Used in lowering blood cholesterol levels (due to presence of ALA),
control blood pressure
o Used in treatment of inflammation associated with gout
o Controls constipation
o It is an important drying oil in the paint and varnish industry
STEP 4: Natural Source, Constituents and Uses of Coconut Oil (10 minutes)
o Coconut oil is a fixed oil obtained by expression or extraction from
the seeds of Cocos nucifera (Palmae)
o The oil is pale yellow to colourless liquid which may have an odour of
coconut
o Lauric acid (chief constituent)
o Myristic acid
o Stearic acid
o Caproic acid
o Capric acid
o Caprylic acid
o Palmitic acid
|Activity: Buzzing (5 minutes) |
| |
|ASK students to pair up and buzz on the following question for 2 |
|minutes |
| |
|What are the uses of Coconut oil? |
| |
|ALLOW few pairs to respond and let other pairs to add on points not |
|mentioned |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content below |
o Pharmaceutically in ointment base
o Cosmetically as a moisturizer
o Also used in making soap, candles, chocolate, candies etc.
STEP 5: Natural Source, Constituents and Uses of Cottonseed Oil (10
minutes)
o Cotton seed oil is a fixed oil expressed from seeds of Gossypium
hirustum family Malvaceae
o Oleic acid
o Linoleic acid
o Palmitic acid
o Stearic acid
o Solvent in injections
o Used in the manufacture of soaps
STEP 6: Key Points (5 minutes)
(Palmae)
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 37: Fats
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Objectives |
|2 |15 minutes |Brainstorming |Definition of Fats |
| | |Presentation | |
|3 | |Small group |Natural Source, Constituents and |
| |20 minutes |discussion |Uses of Lanolin and Wool Fats |
| | |Presentation | |
|4 |10 minutes |Presentation |Natural Source, Constituents and |
| | | |Uses of Lard |
|5 |05 minutes |Presentation |Key Points |
|6 |05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Definition of Fats (15 minutes)
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What are fats? |
| |
|ALLOW few students to respond |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARIZE by using the content below |
deposited as a layer under the skin or around internal organs
which are solid at room temperature and are the main constituents of
animal and vegetable fat
STEP 3: Natural Source, Constituents and Uses of Lanolin and Wool Fats
(20 minutes)
|Activity: Small Group Discussion (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following questions |
|What is lanolin and wool fats? |
| |
|ALLOW students to discuss for 10 minutes |
| |
|ALLOW few groups to present and the rest to add points not |
|mentioned |
| |
|CLARIFY and SUMMARIZE by using the contents below |
o Lanolin is a purified fat-like substance prepared from the wool of the
sheep Ovis aries, family Bovidae
o Lanolin is also known as hydrous wool fat
o Wool fat is a pale yellow substance with a characteristic odor obtained
after purification, bleaching and dehydration of lanolin
o Both lanolin and wool fat are rich in cholesterol, isocholesterol and
unsaturated monohydric alcohols
o Emollient base for creams and ointments
o Major component of most ointments
STEP 4: Natural Source, Constituents and Uses of Lard (10 minutes)
o Lard is a purified internal fat of the hog, Sus scrofa
o Prepared from the abdominal fat
o Obtained by treatment with hot water.
o Lard is soft, white fat with a non-rancid odor.
o Lard contains 40% solid glycerides such as myristin and 60% of mixed
liquid glycerides such as olein
o In preparation of ointments and perfumes
STEP 5: Key Points (5 minutes)
acids, which are solid at room temperature and are the main constituents
of animal and vegetable fat.
Sus scrofa
STEP 6: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
Session 38: Waxes
Total Session Time: 60 minutes
Prerequisites
Learning Tasks
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |05 minutes |Presentation |Introduction to Waxes |
|3 |10 minutes |Presentation |Natural Sources, Constituents and |
| | |Buzzing |Uses of Carnauba Wax |
|4 | |Small group |Natural Sources, Constituents and |
| |20 minutes |discussion |Uses of Bees Wax |
| | |Presentation | |
|5 |10 minutes |Presentation |Natural Sources, Constituents and |
| | | |Uses of Spermaceti |
|6 |05 minutes |Presentation |Key Points |
| 7|05 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Introduction to Waxes (10 minutes)
alcohols e.g. ceryl and myricyl alcohols, cholesterols and phytosterols
combined with of high molecular weight straight-chain acids
glycerol
alcohols
from fats and fixed oils
o Fats and oils may be saponified by means of either aqueous or alcoholic
alkali but waxes are only saponified by alcoholic alkali
o This fact is used for the detection of fats when added as adulterants
to waxes
cosmetic creams
STEP 3: Natural Sources, Constituents and Uses of Carnauba Wax (5
minutes)
o Carnauba wax is a wax obtained from the leaves (cuticle) of Copernicia
cerifera (Palmae)
o The wax consists of alkyl esters of wax acids mainly myricyl cerotate
o Tablet coatings
STEP 4: Natural Sources, Constituents and Uses of Bees Wax (20 minutes)
|Activity: Small Group Discussion (10 minutes) |
| |
|DIVIDE students into small manageable groups |
| |
|ASK students to discuss on the following question |
|What is the constituents and uses of bees waxes |
| |
|ALLOW students to discuss for 10 minutes |
| |
|ALLOW few groups to present and the rest to add points not mentioned|
| |
| |
|CLARIFY and SUMMARIZE by using the contents below |
o Bees wax is the purified wax from the honeycomb of the bee Apis
mellifera (Apidae)
o Is secreted in cells of abdomen of worker bees
o It is solid varying in colour from yellow to greyish brown
o 80% of myricyl palmitate (myricin)
o 15% free cerotic acid an aromatic substance cerolein, hydrocarbons,
lactones, cholesteryl esters and pollen pigments
o Yellow bees wax is used
o White bees wax (bleached, purified yellow wax)
STEP 5: Natural Source, Constituents and Uses of Spermaceti (10 minutes)
o Spermaceti is a solid wax obtained from mixed oils derived from the
head and blubber of the sperm whale Physeter macrocephalus and the
bottle-nosed whale, Hyperoodon rostratus.
o The wax is white translucent, crystalline masses consists of alkyl
(cetyl) esters with cetyl palmitate, cetyl myristate, acetyl laurate
and cetyl laurate
o Emollient agent
STEP 6: Key Points (5 minutes)
alcohols e.g. ceryl and myricyl alcohols, cholesterols and phytosterols
combined with of high molecular weight straight-chain acids
(Palmae)
STEP 7: Evaluation (5 minutes)
References
Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans
pharmacognosy. London: Saunders.
Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical
Press
Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.
Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).
Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &
Wilkins.
Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.
Churchill Livingstone/Elsevier.
———————–
PST 05210 Basic Pharmacognosy
NTA Level 5 Semester 2
March 2019
Rhizodermis
Unataka kutumiwa notes hizi kupitia WhatsApp?Kwa notes zilizopangiliwa vizuri kwa kusoma offline au PDF, bonyeza kitufe hapa chini. Ujumbe wenye Level, Semester, Module na Topic utaandaliwa moja kwa moja.TUMIWA NOTES WHATSAPP