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Author Spotlight: Innovative Techniques and Future Directions in Stroke Research
Published on: May 5, 2023
Association of CYP2C19 Polymorphisms With Clopidogrel Reactivity and Clinical Outcomes in Chronic Ischemic Stroke
Tomotaka Tanaka1, Hiroshi Yamagami2,3, Masafumi Ihara1
1Department of Neurology, National Cerebral and Cardiovascular Center.
Insights
CYP2C19 genetic variants did not significantly impact cardiovascular events in chronic stroke patients taking clopidogrel. This study found no difference in outcomes regardless of the patient's metabolizer status.
Area of Science:
- Pharmacogenomics
- Cardiovascular Medicine
- Neurology
Background:
- CYP2C19 variants influence clopidogrel's antiplatelet effect.
- The impact of time since stroke onset on this relationship is unclear.
Purpose of the Study:
- To investigate the effect of CYP2C19 variants on clinical outcomes in the chronic phase after stroke.
- To determine if elapsed time from stroke onset modifies the association between CYP2C19 genotype and cardiovascular events.
Main Methods:
- Prospective cohort study of 518 Japanese non-acute stroke patients on clopidogrel.
- Patients categorized into extensive, intermediate, and poor metabolizer groups based on CYP2C19 genotype.
- Assessed clopidogrel's antiplatelet effects and composite cerebrocardiovascular events (CVEs).
Main Results:
- Median follow-up was 181 days post-stroke.
- No significant differences in cardiovascular event rates were observed among the CYP2C19 metabolizer groups.
- 28 cardiovascular and 2 major bleeding events occurred in 501 patients.
Conclusions:
- CYP2C19 genotype does not significantly affect CVE rates in the chronic phase post-stroke.
- The association between CYP2C19 variants and clopidogrel response may differ in the chronic vs. acute stroke phase.
Background:
CYP2C19variants are associated with the antiplatelet effects of clopidogrel against recurrent cardiovascular events. However, it remains unknown whether the elapsed time from stroke onset affects the relationship between the genetic variants and such events. To address this, we conducted a prospective cohort study to determine the effect ofCYP2C19variants on clinical outcomes in the chronic phase.
Methods And Results:
In total, 518 Japanese non-acute stroke patients treated with clopidogrel were registered at 14 institutions. Patients were classified into 3 clopidogrel-metabolizing groups according toCYP2C19genotype: extensive metabolizer (EM:*1/*1), intermediate metabolizer (IM:*1/*2or*1/*3), and poor metabolizer (PM:*2/*2,*2/*3, or*3/*3). Antiplatelet effects of clopidogrel were assessed by adenosine diphosphate (ADP)-induced platelet aggregation and vasodilator-stimulated phosphoprotein (VASP) phosphorylation. The endpoint was composite cerebrocardiovascular events (CVEs). In 501 successfully followed-up patients, the median time from index stroke to enrollment was 181 days. There were 28 cardiovascular and 2 major bleeding events. There were no significant differences in the rates of cardiovascular events among the groups.
Conclusions:
Despite associations betweenCYP2C19variants and on-clopidogrel platelet reactivity, there was no significant difference in rates of CVEs in the chronic stroke phase among the 3 clopidogrel-metabolizing groups ofCYP2C19variants.
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