CYP2C19 genotype-guided P2Y12 inhibitor therapy optimization in patients at high bleeding risk: existing evidence and future directions

INTRODUCTION: Use of CYP2C19 genotype to optimize oral P2Y12 inhibitor therapy can reduce major adverse cardiovascular events (MACE) after percutaneous intervention (PCI) in acutecoronary syndrome (ACS) patients. Interest in guided strategies to reduce bleeding risk by 'de-escalation' of antiplatelet therapy, particularly in high bleeding risk (HBR) patients, has increased. AREAS COVERED: genotype-guided approaches to optimize P2Y12 inhibitor therapy, and (3) identifies knowledge gaps and future research directions to determine the clinical utility of this strategy in real-world settings. A literature search was performed across PubMed, Embase and Google Scholar (inception-April 2026). CYP2C19: genotype-guided P2Y12 inhibitor de-escalation can reduce bleeding risk without increasing MACE risk post-PCI. However, this strategy's clinical utility in HBR patients, who may derive greatest benefit, has not been well-studied. Future research evaluating the impact of genotype-guided de-escalation strategies on post-PCI clinical outcomes in HBR patients is needed. Integrating clinical decision support tools, real-world evidence, and multidisciplinary approaches offer potential to optimize P2Y12 inhibitor therapy and improve outcomes in HBR patients.

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Publication Details

Journal
Expert Review of Clinical Pharmacology
Published
2026-09-12
DOI
https://doi.org/10.1080/17512433.2026.2733754
Primary Topic
Antiplatelet Therapy and Cardiovascular Diseases
Type
article
Field-Weighted Citation Impact
0.00

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article

CYP2C19 genotype-guided P2Y12 inhibitor therapy optimization in patients at high bleeding risk: existing evidence and future directions

Ngoc Phuong Mai Le, Kevin A. Friede, Craig R. Lee, Angela Su
Expert Review of Clinical Pharmacology
Antiplatelet Therapy and Cardiovascular Diseases
article

CYP2C19 genotype-guided P2Y12 inhibitor therapy optimization in patients at high bleeding risk: existing evidence and future directions

Ngoc Phuong Mai Le, Kevin A. Friede, Craig R. Lee, Angela Su
article en

Abstract

INTRODUCTION: Use of CYP2C19 genotype to optimize oral P2Y12 inhibitor therapy can reduce major adverse cardiovascular events (MACE) after percutaneous intervention (PCI) in acutecoronary syndrome (ACS) patients. Interest in guided strategies to reduce bleeding risk by 'de-escalation' of antiplatelet therapy, particularly in high bleeding risk (HBR) patients, has increased. AREAS COVERED: genotype-guided approaches to optimize P2Y12 inhibitor therapy, and (3) identifies knowledge gaps and future research directions to determine the clinical utility of this strategy in real-world settings. A literature search was performed across PubMed, Embase and Google Scholar (inception-April 2026). CYP2C19: genotype-guided P2Y12 inhibitor de-escalation can reduce bleeding risk without increasing MACE risk post-PCI. However, this strategy's clinical utility in HBR patients, who may derive greatest benefit, has not been well-studied. Future research evaluating the impact of genotype-guided de-escalation strategies on post-PCI clinical outcomes in HBR patients is needed. Integrating clinical decision support tools, real-world evidence, and multidisciplinary approaches offer potential to optimize P2Y12 inhibitor therapy and improve outcomes in HBR patients.

Expert Review of Clinical Pharmacology
University of North Carolina at Chapel Hill (US)
National Institutes of Health, National Heart, Lung, and Blood Institute
Zero hunger
Openalex Percentile: Top 10%
Antiplatelet Therapy and Cardiovascular Diseases
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CYP2C19 genotype-guided P2Y12 inhibitor therapy optimization in patients at high bleeding risk: existing evidence and future directions — Ngoc Phuong Mai Le, Kevin A. Friede, et al. · Expert Review of Clinical Pharmacology (2026) | TGRS Research Map | TGRS