AI Article Synopsis

  • Clopidogrel is a crucial medication used to prevent complications like restenosis and cardiovascular events after stent placement, but its effectiveness relies on the patient's genetic makeup, specifically CYP2C19 alleles.
  • Genetic variations can lead to poor responses to clopidogrel in about 30% of patients, highlighting the need to understand global variations in these genetic markers.
  • The study advocates for pre-treatment genotyping to tailor medications to individuals, ensuring better outcomes and reducing risks in patients with genetic variants affecting drug metabolism.

Article Abstract

Introduction: Clopidogrel is a P2Y inhibitor that has become a mainstay treatment following percutaneous intervention with drug-eluting stent placement to decrease restenosis and its potential complications, including sudden cardiac death and ischaemic strokes in patients with significant vascular disease.

Areas Covered: As a prodrug, the metabolism and efficacy of clopidogrel are contingent on the presence of wild-type CYP450 (CYP2C19) alleles. Genetic polymorphisms and variants are well known to impair its ability to prevent major adverse cardiovascular events in these patients, with inadequate response rates as high as 30% in previous publications. Patterns of allelic frequencies are expected to exhibit similarities between individuals of the same ancestry, ethnic group or geographic region. Accordingly, we seek to further elucidate worldwide prevalence rates for genetic polymorphisms in the CYP2C19-dependent metabolism of clopidogrel and review the potential of personalised CYP2C19 genotyping in clinical practice to mitigate this high treatment resistance and its associated burden on patients.

Experts' Commentary: Our findings support the consideration of genotyping before initiation of therapy to guide adequate dosage or substitutions of other P2Y inhibitors to promote personalised, precision medicine and to prevent adverse events when these therapies may inevitably fail in patients with variants of the CYP450 (CYP2C19) system.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10649851PMC
http://dx.doi.org/10.1136/openhrt-2023-002436DOI Listing

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