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Updated: Apr 26, 2026

Author Spotlight: A Pharmacodissection Approach to Uncover Mechanisms in Cardiovascular Disease Risk Populations
Published on: July 21, 2023
Cardiovascular pharmacogenetics of anti-thrombotic agents and non-steroidal anti-inflammatory drugs
J Stitham, P Vanichakarn, L Ying
1Yale Cardiovascular Research Center, Section of Cardiovascular Medicine, Department of Internal Medicine, 300 George Street, Room 759H, New Haven, CT 06511, USA. john.hwa@yale.edu.
Insights
Understanding genetic factors influencing antiplatelet drug response is crucial for optimizing cardiovascular event prevention. Personalized medicine aims to identify biomarkers for better efficacy and reduced risks with antithrombotic and NSAID therapies.
Area of Science:
- Cardiovascular pharmacogenetics
- Drug response variability
Background:
- Antiplatelet agents like aspirin and clopidogrel reduce cardiovascular events but have suboptimal use due to variable patient response.
- Antithrombotic resistance and increased cardiovascular risk with NSAIDs present clinical challenges.
- Balancing risks and benefits of these widely used medications is complex.
Purpose of the Study:
- To investigate factors influencing antithrombotic and NSAID therapies.
- To explore the role of cardiovascular pharmacogenetics in understanding drug response.
- To identify genetic biomarkers for predicting drug efficacy and adverse reactions.
Main Methods:
- Focus on pharmacogenetics for discovering genetic biomarkers.
- Prospective screening and individualized prediction of drug response.
- Analysis of drug interactions between antithrombotics and NSAIDs.
Main Results:
- Identification of inter-individual variations in response to antiplatelet therapy.
- Recognition of NSAIDs as potential contributors to cardiovascular events.
- Growing concern regarding antithrombotic resistance and poor responders.
Conclusions:
- Genetic biomarkers are key to personalized medicine in cardiovascular pharmacogenetics.
- Individualized prediction of drug efficacy and adverse reactions is a major aim.
- Further research is needed to optimize antithrombotic and NSAID therapies for cardiovascular disease.
Abstract:
The use of antithrombotic agents, particularly antiplatelet drugs like aspirin and clopidogrel, has been instrumental in decreasing the risk for adverse cardiovascular events across a wide range of patients. However, despite the established benefits, the use of these medications remains suboptimal. There is a high degree of inter-individual variation in response to these treatments, whereby patients experience occlusive thromboembolic events, in spite of maintaining an appropriate treatment regimen. This has lead to the notion of antithrombotic "resistance" or "poor responders", which has been a growing concern amongst clinicians and other healthcare providers. Compounding this matter even further, reports of increased cardiovascular risk associated with the use of non-steroidal anti-inflammatory drugs (NSAIDs), such as ibuprofen and naproxen, have revealed additional and unforeseen contributors to myocardial infarction and stroke. With all medications, striking a balance between the potential risks and benefits seems more art than science at times. However, given their widespread use and critical cardiovascular implications, further emphasis has been placed on understanding factors influencing antithrombotic and NSAID therapies. A major aim in cardiovascular pharmacogenetics is the discovery of genetic biomarkers that will allow for prospective screening and individualized prediction of drug efficacy and adverse reactions for these medications (both alone and together) within the context of cardiovascular disease.
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