Enzyme Inhibitors and Inducers – PST05104 Pharmacology and Therapeutics

NTA Level 5 • Semester 1 • PST05104

Enzyme Inhibitors and Inducers

Pharmacology and Therapeutics • Source Session/Topic 7
Full source-text version: all educational wording from the extracted learning source is retained; only presenter/tutor metadata and web-layout noise are removed, while formatting is improved for readability.

Session 7: Enzyme Inhibitors and Inducers

Total Session Time: 120 minutes

Prerequisites

None

Learning Tasks

By the end of this session students are expected to be able to:

Describe Enzyme induction

Describe Enzyme inhibition

Describe role of enzyme induction and inhibition

Resources Needed:

Flip charts, marker pens, and masking tape

Black/white board and chalk/whiteboard markers

Computer and LCD Projector

SESSION OVERVIEW

Step

Time

Activity/

Content

Step

Time

Activity/

Content

Step

Time

Activity/

Content

Step

Time

Method

Content

Method

Method

1

1

05 minutes

05 minutes

Presentation

Introduction, Learning Tasks

Introduction, Learning Tasks

2

2

30 minutes

30 minutes

Presentation/

Enzyme Inducers

Enzyme Inducers

2

2

30 minutes

30 minutes

Buzzing

Enzyme Inducers

Enzyme Inducers

Buzzing

Presentation/

3

3

45 minutes

45 minutes

Small Group

Enzyme Inhibitors

Enzyme Inhibitors

Discussion

4

4

30 minutes

30 minutes

Presentation

Clinical Importance of Enzyme Induction and

Clinical Importance of Enzyme Induction and

4

4

30 minutes

30 minutes

Brainstorming

Inhibition

Inhibition

Brainstorming

Inhibition

Inhibition

5

5

05 minutes

05 minutes

Presentation

Key Points

Key Points

6

6

05 minutes

05 minutes

Presentation

Evaluation

Evaluation

PST 05104 Pharmacology & Therapeutics 52 NTA Level 5 Semester 1 Facilitator Guide

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: Description of Enzyme Induction (30 minutes)

Activity: Buzzing (5 minutes)

ASK students to pair up and buzz on the following question for 2 minutes

How does enzyme induction occur?

ALLOW few pairs to respond and let other pairs add on points not mentioned

WRITE their response on the flip chart/board

CLARIFY and SUMMARIZE by using the content below

As discussed in the earlier session on metabolism of drugs, Cytochrome P-450 Enzymes Cytochrome (CYP450) enzymes are responsible for metabolism of endogenous or exogenous substrates.

There are at least 40 CYP450 enzymes but the most common isozymes are 3A4, 2D6, 2C9 and 2C19, and 1A2.

Clinically significant drug interactions arise from either induction or inhibition of these enzymes.

Enzyme induction:

A number of drugs increase the activity of microsomal oxidase and conjugating systems when administered repeatedly.

The effect is referred to as induction and is the result of increased synthesis of microsomal enzymes

An inducer stimulates increased production of a CYP450 enzyme.

Enzyme induction can increase drug toxicity and may reduce drug effectiveness (drug interaction).

Drugs which induce cytochrome P450 enzyme system significantly include: o Rifampicin, ethanol and Carbamazepine

o Drinks and herbal plants may also induce the cytochrome 450 isoenzyme a good example being St. John‘s wort and nicotine (smoking).

PST 05104 Pharmacology & Therapeutics 53 NTA Level 5 Semester 1 Facilitator Guide

STEP 3: Enzyme Inhibition (45Minutes)

Activity: Brainstorming (5 minutes)

Ask students to brainstorm on the following question:

How does enzyme inhibition occur?

ALLOW few students to respond

WRITE their responses on the flip chart/ board

CLARIFY and SUMMARISE by using the content below

Inhibition of a CYP450 enzyme will result in increased levels of a substrate (drug) that is metabolized by that enzyme.

Inhibition may be either competitive or allosteric:

Competitive inhibition

Two drugs are metabolized by the same enzyme system, and one of the drugs binds more readily to the enzyme, resulting in the inhibition of metabolism of the other drug.

Example: Erythromycin and atorvastatin are both metabolized by CYP3A4.

o Erythromycin is also a CYP3A4 inhibitor; therefore it inhibits the metabolism of atorvastatin.

Allosteric (non-competitive) inhibition

A drug inhibits an enzyme that it itself is not metabolized by.

This inhibition occurs at an allosteric site (i.e., not at the site where the substrates bind).

Drugs which inhibit cytochrome P450 enzyme system significantly include:

Cimetidine,

Omeprazole,

Quinolone antibiotics,

Amiodarone,

Antipsychotics,

Antihistamines,

Antifungal drugs,

Fluvastatin,

Isoniazid,

Macrolide antibiotics

Drinks and herbal plants may also inhibit the cytochrome 450 isoenzyme a good example being grapefruit juice and red wine.

PST 05104 Pharmacology & Therapeutics 54 NTA Level 5 Semester 1 Facilitator Guide

STEP 4: Clinical Importance of Enzyme Induction (30minutes)

Enzyme inhibition:

It may lead to drug-drug interaction due to increased plasma concentration of active drug (substrate) which its metabolism has been inhibited resulting in increased biologic activity (or toxicity) of the drug.

Prodrugs require metabolic enzymes for transformation to an active (or more active) metabolite.

Therefore enzyme inhibitor would lead to a reduction in levels of active drug, in turn reducing the biologic activity of the drug.

Enzyme induction

It may lead to drug-drug interaction whereby the plasma concentration of active drug (substrate) which its metabolism has been increased will be sub-optimal, which might result in reduced biologic activity of the drug, perhaps leading to therapeutic failure.

However, for drugs having toxic metabolites, enzyme induction may exacerbate metabolite-mediated toxicity because more and more toxic metabolited will be formed.

For prodrug enzyme induction may accelerate the formation of active drug, , leading to an exaggerated effect and toxicity

STEP 5: Key Points (5 minutes)

Induction or inhibition of metabolizing enzyme has a clinical importance.

Concomitant administration of known significant inducers or inhibitors with other drugs may result to drug interactions

The most common isozymes most likely to be inhibited or induced are 3A4, 2D6, 2C9 2C19 and 1A2.

STEP 6: Evaluation (5 minutes)

What types of drugs are known to be enzyme inducers?

What is the importance of enzyme inhibition?

What is the consequence of enzyme induction on a pro drug?

PST 05104 Pharmacology & Therapeutics 55 NTA Level 5 Semester 1 Facilitator Guide

References

Katzung, B. G. (2018). Basic and clinical pharmacology. New York: Mcgraw Hill Education.

Santos, R. R., Rang, H. P., Dale, M. M., Ritter, J. M., & Flower, R. J. (2007). Rang & Dale Farmacologia. Rio de Janeiro: Elsevier.

Tripathi, K. (2018). Essentials of Medical Pharmacology. Place of publication not identified:

Jaypee Brothers Medical P.

Ministry of Health and Social Welfare. (2013). Standard Treatment Guidelines & National Essential Medicines List Tanzania Mainland (4th ed.). Dar es salaam, Tanzania government printers.

Robert L. Talbert, Gary C. Yee, Gary R. Matzke, Barbara G. Wells, L. Michael. (2014). Pharmacotherapy: A Pathophysiologic Approach (9th ed.). New York, McGraw-Hill Education.

Sally S.R, Jeanne C.S. (2000). Introductory Clinical Pharmacology (6th ed) New York, Lippincott Williams and Wilkins.

School of Pharmaceutical sciences. (2011).Tanzania Pharmaceutical Handbook (2nd ed.).

Dar es Salaam, ARDHI University press.

The Royal Pharmaceutical Society of Great Britain. (2007). Martindale, the Extra Pharmacopoeia (5TH ed). London, pharmaceutical press.

The Royal Pharmaceutical Society of Great Britain. 2009. British National Formulary (59th ed). London, BMJ Group and RPS Publishing.

PST 05104 Pharmacology & Therapeutics 56 NTA Level 5 Semester 1 Facilitator Guide

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