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Published on: May 23, 2025
Role of platelet glycoprotein polymorphisms in cardiovascular diseases
Christian Meisel1, José A López, Karl Stangl
1Institute of Clinical Pharmacology, Charité University Medical Center, Humboldt University of Berlin, Campus Mitte, Schumannstrasse 20-21, Berlin, Germany. christian.meisel@charite.de
Insights
Genetic variations in platelet glycoprotein receptors influence atherothrombosis risk and anti-platelet drug response. Understanding these polymorphisms may enable personalized medicine for cardiovascular diseases.
Area of Science:
- Cardiovascular Medicine
- Pharmacogenomics
- Molecular Biology
Background:
- Atherothrombosis is a major cause of death, with complications including acute coronary syndromes and ischemic stroke.
- Platelet glycoprotein receptors are critical in thrombosis and atherogenesis.
- Genetic variability exists in key platelet glycoprotein receptor genes.
Purpose of the Study:
- To review the impact of platelet glycoprotein receptor polymorphisms on platelet function.
- To examine the role of these polymorphisms in atherothrombosis susceptibility and drug response.
- To explore the potential for personalized anti-platelet therapy.
Main Methods:
- Literature review of studies investigating platelet glycoprotein receptor gene polymorphisms.
- Analysis of data on the effects of polymorphisms on platelet function and clinical outcomes.
- Evaluation of polymorphisms as predictors of anti-platelet drug efficacy and variability.
Main Results:
- Platelet glycoprotein receptor polymorphisms affect platelet function and susceptibility to atherothrombosis.
- These genetic variations influence individual responses to anti-platelet drugs like abciximab, tirofiban, and eptifibatide.
- Polymorphisms can predict drug response and may guide personalized treatment strategies.
Conclusions:
- Platelet glycoprotein receptor gene polymorphisms are significant factors in atherothrombosis and drug response.
- Individualized drug treatment based on genetic profiles is a promising future direction.
- Future clinical trials should incorporate genetic stratification for improved study design and patient selection.
Abstract:
Atherothrombosis is the leading cause of death in western countries. Major complications of atherothrombotic disease, which are responsible for a large burden of morbidity and mortality, are acute coronary syndromes, ischemic stroke, and peripheral occlusive disease. Plaque rupture, platelet adhesion, aggregation, and thrombosis may lead to unstable angina and may progress to myocardial infarction as well as to ischemic stroke. Platelet membrane glycoprotein receptors mediate crucial reactions in acute thrombosis and chronic processes of atherogenesis. The platelet glycoprotein GP IIb/IIIa, which is the most abundant platelet receptor, also represents the drug target of a novel class of anti-platelet drugs, which includes abciximab, tirofiban, and eptifibatide. The genes encoding the three major platelet glycoprotein receptors (GP Ib/IX/V, GP Ia/IIa, and GP IIb/IIIa) are subject to considerable genetic variability. This paper reviews how polymorphisms in the platelet glycoprotein receptors affect platelet function, susceptibility to atherothrombosis and its major complications including myocardial infarction, stroke, and complications following percutaneous coronary interventions, and individual variability of drug response. Recent data on platelet glycoprotein receptor polymorphisms as modifiers of drug action and as predictors of drug response offer the perspective of individualized drug treatment. Prospective studies will show whether this approach is useful or not. As the data reviewed here show clearly, future clinical trials should routinely take into account genetic susceptibility factors and modifiers, both for study design and for predefined patient stratification.
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