Literature DB >> 21511218

High doses of clopidogrel to overcome genetic resistance: the randomized crossover CLOVIS-2 (Clopidogrel and Response Variability Investigation Study 2).

Jean-Philippe Collet1, Jean-Sébastien Hulot, Ghalia Anzaha, Ana Pena, Thomas Chastre, Claire Caron, Johanne Silvain, Guillaume Cayla, Anne Bellemain-Appaix, Jean-Baptiste Vignalou, Sophie Galier, Olivier Barthélémy, Farzin Beygui, Vanessa Gallois, Gilles Montalescot.   

Abstract

OBJECTIVES: This study sought to determine whether the pharmacokinetic (PK) and pharmacodynamic (PD) responses to high or standard clopidogrel loading doses (LDs) differ according to CYP2C19*2 allele.
BACKGROUND: CYP2C19 loss-of-function alleles are associated with reduced responsiveness to standard clopidogrel doses.
METHODS: Young post-myocardial infarction patients heterozygous (wild type [wt]/*2, n = 43) or homozygous (*2/*2, n = 8) for the CYP2C19*2 genetic variant were matched with patients not carrying the variant (wt/wt, n = 58). All patients were randomized to a 300- or 900-mg clopidogrel LD. The relative reduction in residual platelet aggregation (RR-RPA, %) and the area under the plasma concentration time curve of active metabolite from baseline to 6 h after loading (AUC(0-6)) were compared according to both LD and CYP2C19*2 carriage.
RESULTS: The 300-mg LD led to a gene-dose effect for RR-RPA (-65.7% ± 35.9% in wt/wt vs. -48.0% ± 38.4% in wt/*2 vs. -14.6% ± 32.4% in *2/*2; overall p value = 0.003, p = 0.03 for wt/wt versus wt/*2, p = 0.04 for wt/*2 versus *2/*2) with minor effect in *2/*2 carriers. After the 900-mg LD, the effect of the CYP2C19*2 variant on platelet inhibition was fully compensated in wt/*2 carriers but not in *2/*2 carriers (-83.6% ± 25.8% in wt/wt vs.-77.2% ± 26.9% in wt/*2 vs. -29.5% ± 26.8% in *2/*2; overall p value = 0.0003, p = 0.20 for wt/wt versus wt/*2, p < 0.001 for wt/*2 versus *2/*2). A similar pattern was observed for the active metabolite AUC(0-6) according to carriage of CYP2C19*2 for both LDs. There was a significant correlation between PK and PD responses irrespective of the LD.
CONCLUSIONS: Carriers of CYP2C19*2 display significantly lower responses to clopidogrel with a gene-dose effect. Clopidogrel resistance can be overcome by increasing the dose in heterozygous carriers but not in homozygous carriers. (Clopidogrel and Response Variability Investigation Study 2 [CLOVIS-2]; NCT00822666).
Copyright © 2011 American College of Cardiology Foundation. Published by Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21511218     DOI: 10.1016/j.jcin.2011.03.002

Source DB:  PubMed          Journal:  JACC Cardiovasc Interv        ISSN: 1936-8798            Impact factor:   11.195


  39 in total

1.  Genetic and platelet function testing of antiplatelet therapy for percutaneous coronary intervention: the ARCTIC-GENE study.

Authors:  Jean-Philippe Collet; Jean-Sébastien Hulot; Thomas Cuisset; Grégoire Rangé; Guillaume Cayla; Eric Van Belle; Simon Elhadad; Hélène Rousseau; Pierre Sabouret; Stephen A O'Connor; Jérémie Abtan; Mathieu Kerneis; Christophe Saint-Etienne; Olivier Barthélémy; Farzin Beygui; Johanne Silvain; Eric Vicaut; Gilles Montalescot
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Review 4.  Genome-wide and candidate gene approaches of clopidogrel efficacy using pharmacodynamic and clinical end points-Rationale and design of the International Clopidogrel Pharmacogenomics Consortium (ICPC).

Authors:  Thomas O Bergmeijer; Jean-Luc Reny; Ruth E Pakyz; Li Gong; Joshua P Lewis; Eun-Young Kim; Daniel Aradi; Israel Fernandez-Cadenas; Richard B Horenstein; Ming Ta Michael Lee; Ryan M Whaley; Joan Montaner; Gian Franco Gensini; John H Cleator; Kiyuk Chang; Lene Holmvang; Willibald Hochholzer; Dan M Roden; Stefan Winter; Russ B Altman; Dimitrios Alexopoulos; Ho-Sook Kim; Jean-Pierre Déry; Meinrad Gawaz; Kevin Bliden; Marco Valgimigli; Rossella Marcucci; Gianluca Campo; Elke Schaeffeler; Nadia P Dridi; Ming-Shien Wen; Jae Gook Shin; Tabassome Simon; Pierre Fontana; Betti Giusti; Tobias Geisler; Michiaki Kubo; Dietmar Trenk; Jolanta M Siller-Matula; Jurriën M Ten Berg; Paul A Gurbel; Jean-Sebastien Hulot; Braxton D Mitchell; Matthias Schwab; Marylyn DeRiggi Ritchie; Teri E Klein; Alan R Shuldiner
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Review 5.  The pharmacogenetic control of antiplatelet response: candidate genes and CYP2C19.

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Journal:  Expert Opin Drug Metab Toxicol       Date:  2015-07-14       Impact factor: 4.481

6.  Physiologically Based Pharmacokinetic Modelling of Hyperforin to Predict Drug Interactions with St John's Wort.

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Review 7.  Pharmacogenetics of antiplatelet therapy.

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8.  Routine screening for CYP2C19 polymorphisms for patients being treated with clopidogrel is not recommended.

Authors:  Adnan M Bhopalwala; Robert A Hong; Zia R Khan; Mona R Valentin; Ramy A Badawi
Journal:  Hawaii J Med Public Health       Date:  2015-01

Review 9.  Recent advances in the pharmacogenetics of clopidogrel.

Authors:  Thomas Cuisset; Pierre-Emmanuel Morange; Marie-Christine Alessi
Journal:  Hum Genet       Date:  2011-12-30       Impact factor: 4.132

Review 10.  Clinical pharmacogenomics: opportunities and challenges at point of care.

Authors:  S A Scott
Journal:  Clin Pharmacol Ther       Date:  2012-12-05       Impact factor: 6.875

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