Pharmacokinetic drug interactions with clopidogrel: updated review and risk management in combination therapy

Фармакокинетические лекарственные взаимодействия с клопидогрелом: обновлённый обзор и управление рисками при комбинированной терапии
Quan Zhou, Meng Chen, Lingling Zhu, Lushan Yu, Su Zeng, Mei Xiang, Zhiyu Wang
2015-03-01

CYP2C19 polymorphismP2Y12 receptor inhibitorsclopidogrel drug interactionspharmacokinetic drug interactionsrisk management
BACKGROUND: Coprescribing of clopidogrel and other drugs is common. Available reviews have addressed the drug-drug interactions (DDIs) when clopidogrel is as an object drug, or focused on combination use of clopidogrel and a special class of drugs. Clinicians may still be ignorant of those DDIs when clopidogrel is a precipitant drug, the factors determining the degree of DDIs, and corresponding risk management. METHODS: A literature search was performed using PubMed, MEDLINE, Web of Science, and the Cochrane Library to analyze the pharmacokinetic DDIs of clopidogrel and new P2Y12 receptor inhibitors. RESULTS: Clopidogrel affects the pharmacokinetics of cerivastatin, repaglinide, ferulic acid, sibutramine, efavirenz, and omeprazole. Low efficacy of clopidogrel is anticipated in the presence of omeprazole, esomeprazole, morphine, grapefruit juice, scutellarin, fluoxetine, azole antifungals, calcium channel blockers, sulfonylureas, and ritonavir. Augmented antiplatelet effects are anticipated when clopidogrel is coprescribed with aspirin, curcumin, cyclosporin, St John's wort, rifampicin, and angiotensin-converting enzyme inhibitors. The factors determining the degree of DDIs with clopidogrel include genetic status (eg, cytochrome P540 [CYP]2B6*6, CYP2C19 polymorphism, CYP3A5*3, CYP3A4*1G, and CYP1A2-163C.A), species differences, and dose strength. The DDI risk does not exhibit a class effect, eg, the effects of clopidogrel on cerivastatin versus other statins, the effects of proton pump inhibitors on clopidogrel (omeprazole, esomeprazole versus pantoprazole, rabeprazole), the effects of rifampicin on clopidogrel versus ticagrelor and prasugrel, and the effects of calcium channel blockers on clopidogrel (amlodipine versus P-glycoprotein-inhibiting calcium channel blockers). The mechanism of the DDIs with clopidogrel involves modulating CYP enzymes (eg, CYP2B6, CYP2C8, CYP2C19, and CYP3A4), paraoxonase-1, hepatic carboxylesterase 1, P-glycoprotein, and organic anion transporter family member 1B1. CONCLUSION: Effective and safe clopidogrel combination therapy can be achieved by increasing the awareness of potential changes in efficacy and toxicity, rationally selecting alternatives, tailoring drug therapy based on genotype, checking the appropriateness of physician orders, and performing therapeutic monitoring.
1
Clopidogrel alters the pharmacokinetics of cerivastatin, repaglinide, ferulic acid, sibutramine, efavirenz, and omeprazole.
2
Clopidogrel interaction risks are not uniform across drug classes; effects differ among statins, proton pump inhibitors, P2Y12 inhibitors, and calcium channel blockers.
3
Clopidogrel’s antiplatelet effects may be augmented by aspirin, curcumin, cyclosporin, St John’s wort, rifampicin, and angiotensin-converting enzyme inhibitors.
4
Reduced clopidogrel efficacy is anticipated with omeprazole, esomeprazole, morphine, grapefruit juice, scutellarin, fluoxetine, azole antifungals, calcium channel blockers, sulfonylureas, and ritonavir.
5
The interactions involve modulation of CYP2B6, CYP2C8, CYP2C19, CYP3A4, paraoxonase-1, hepatic carboxylesterase 1, P-glycoprotein, and organic anion transport pathways.
6
The magnitude of clopidogrel drug interactions depends on genetic factors, species differences, and dose strength.

Clopidogrel in combination with concomitant drugs, including new P2Y12 receptor inhibitors

Pharmacokinetic drug–drug interactions, determinants of their magnitude, and associated efficacy, antiplatelet effects, mechanisms, and risk management

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2015-03-01
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Quan Zhou
Meng Chen
Lingling Zhu
Lushan Yu
Su Zeng
Mei Xiang
Zhiyu Wang
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