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Genetic and nongenetic factors influencing the response to clopidogrel
Maria F Notarangelo1, Federico Bontardelli, Piera Angelica Merlini
1aDivision of Cardiology, Azienda Ospedaliero-Universitaria of Parma, Italy bDirector, Cardiovascular Genetics Unit, Department of Cardiology, Azienda Ospedaliera Ospedale Niguarda Cà Granda, Milan, Italy.
Insights
Clopidogrel response varies significantly among patients, impacting its effectiveness. Genetic factors beyond CYP2C19, like ABCB1 and PON1 polymorphisms, likely influence clopidogrel efficacy and patient outcomes.
Area of Science:
- Pharmacogenomics
- Cardiovascular Medicine
- Drug Metabolism
Background:
- Clopidogrel is a vital antiplatelet medication for acute coronary syndrome.
- Over 30% of patients exhibit inadequate response, limiting its clinical efficacy.
- Cytochrome P450 (CYP) enzyme genetic polymorphisms, particularly CYP2C19, are implicated in clopidogrel response variability.
Purpose of the Study:
- To explore the genetic and non-genetic factors contributing to clopidogrel response variability.
- To assess the clinical significance of various genetic polymorphisms and drug interactions.
- To evaluate the potential utility of genotype-guided clopidogrel therapy.
Main Methods:
- Review of existing evidence on clopidogrel pharmacogenomics.
- Analysis of CYP2C19, ABCB1, and PON1 gene polymorphisms.
- Investigation of drug-drug interactions, including proton pump inhibitors.
Main Results:
- CYP2C19 polymorphisms (*2, *17) increase risk of ischemic or bleeding events.
- CYP2C19 explains only 12% of response variability, suggesting other factors are crucial.
- ABCB1 and PON1 polymorphisms also affect clopidogrel bioavailability and response, though clinical impact remains debated.
- Proton pump inhibitor interactions lack conclusive evidence.
Conclusions:
- Clopidogrel response variability is multifactorial, involving genetics beyond CYP2C19 and potential drug interactions.
- Current genetic testing for clopidogrel response is limited by its focus on CYP2C19.
- Further research is needed to establish genotype-guided clopidogrel therapy efficacy.
Abstract:
The antiplatelet drug clopidogrel is a commonly prescribed therapy in patients with acute coronary syndrome. However, its clinical efficacy is hampered by a wide inter-patient response variability, with over 30% of patients treated with this drug experiencing an inadequate antiplatelet response. There are growing evidences that clopidogrel response variability is associated with cytochrome P450 (CYP) enzyme genetic polymorphisms, primarily CYP2C19 which is responsible for the conversion of clopidogrel into its active metabolite. All of the CYP2C19 polymorphism data suggest that carriers of allele *2 or *17 are at greater risk of ischemic or bleeding events, particularly in patients with acute coronary syndrome undergoing percutaneous coronary intervention. Yet, CYP2C19 status explains only 12% of clopidogrel response variability, indicating that genetic variants other than CYP2C19 might be important. Clopidogrel undergoes intestinal efflux via P-glycoprotein, encoded by the ABCB1 gene. The C3435T polymorphism in this gene affects the bioavailability of clopidogrel, however, its effects on clinical outcomes are inconclusive. Similarly, a polymorphism in the gene encoding PON1, a rate-limiting enzyme for clopidogrel bioactivation, also affects the response to clopidogrel. Among nongenetic factors, an adverse drug interaction between proton pump inhibitors and clopidogrel is often reported, but evidence is inconclusive. A genetic test to identify potential responders to clopidogrel might be useful. However, the use of such tests is currently limited because they focus mainly on CYP2C19 loss-of-function alleles, and there is no empirical evidence yet for genotype-guided clopidogrel therapy.
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