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Clinical Pharmacogenetics Implementation Consortium Guideline for <i>CYP2C19</i> Genotype and Clopidogrel Therapy: 2022 Update

Clinical Pharmacology & Therapeutics · 2022 · Vol. 112(5) · pp. 959–967
Craig R. LeeJasmine A. LuzumKatrin SangkuhlRoseann S. GammalMarc S. SabatineCharles Michael SteinDavid F. KisorNita A. LimdiYee Ming LeeStuart A. ScottJean‐Sébastien HulotDan M. RodenAndrea GaedigkKelly E. CaudleTeri E. KleinJulie A. JohnsonAlan R. Shuldiner

Abstract

CYP2C19 catalyzes the bioactivation of the antiplatelet prodrug clopidogrel, and CYP2C19 genotype impacts clopidogrel active metabolite formation. CYP2C19 intermediate and poor metabolizers who receive clopidogrel experience reduced platelet inhibition and increased risk for major adverse cardiovascular and cerebrovascular events. This guideline is an update to the 2013 Clinical Pharmacogenetics Implementation Consortium (CPIC) guideline for the use of clopidogrel based on CYP2C19 genotype and includes expanded indications for CYP2C19 genotype-guided antiplatelet therapy, increased strength of recommendation for CYP2C19 intermediate metabolizers, updated CYP2C19 genotype to phenotype translation, and evidence from an expanded literature review (updates at www.cpicpgx.org).

Antiplatelet Therapy and Cardiovascular DiseasesPlatelet Disorders and TreatmentsPharmacogenetics and Drug MetabolismClopidogrelCYP2C19GuidelinePharmacogeneticsProdrugGenotypeActive metaboliteAdverse effect

MeSH terms

ClopidogrelGenotypePharmacogeneticsPlatelet Aggregation InhibitorsProdrugsTiclopidineCytochrome P-450 CYP2C19

Funding

  • Brigham and Women's Hospital
  • Regeneron Pharmaceuticals
  • Zora Biosciences
  • National Institutes of Health
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Clinical Pharmacogenetics Implementation Consortium Guideline for <i>CYP2C19</i> Genotype and Clopidogrel Therapy: 2022 Update · Scinovex