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Pharmacogenetics of cardiovascular drug therapy
Bas J M Peters1, Olaf H Klungel, Anthonius de Boer
1Utrecht Institute for Pharmaceutical Sciences, Utrecht University, Utrecht, the Netherlands.
Insights
Genetic variability influences cardiovascular drug response, but only VKORC1 and CYP2C9 variations consistently impact coumarin therapy. Current pharmacogenetic approaches need improvement for personalized cardiovascular medicine.
Area of Science:
- Pharmacogenetics
- Cardiovascular Medicine
- Genetics
Background:
- Cardiovascular diseases are leading causes of death globally.
- Variability in patient response to cardiovascular drugs is significant.
- Genetic factors are suspected contributors to this interindividual variability.
Purpose of the Study:
- To review pharmacogenetic studies on commonly prescribed cardiovascular drugs.
- To identify genes consistently associated with drug response.
- To evaluate the clinical utility of genetic testing in cardiovascular therapy.
Main Methods:
- Literature review of pharmacogenetic studies.
- Focus on platelet aggregation inhibitors, coumarins, antihypertensives, and statins.
- Analysis of studies with consistent outcome measures.
Main Results:
- Polymorphisms in genes like VKORC1 and CYP2C9 are linked to coumarin response.
- Consistent associations with clinical implications are limited to VKORC1 and CYP2C9.
- Evidence for routine genetic testing in other cardiovascular drug therapies is currently lacking.
Conclusions:
- Only VKORC1 and CYP2C9 variations show consistent clinical relevance for coumarin therapy.
- More research and clinical trials are needed to validate genetic testing for cardiovascular drugs.
- Current pharmacogenetic research requires new approaches for effective individualized medicine.
Abstract:
In developed countries cardiovascular disease is one of the leading causes of death. Cardiovascular drugs such as platelet aggregation inhibitors, oral anticoagulants, antihypertensives and cholesterol lowering drugs are abundantly prescribed to reduce risk of cardiovascular disease. Notable interindividual variation exists in the response to these pharmacotherapeutic interventions, which can be partially explained by factors such as gender, age, diet, concomitant drug use and environmental factors. Notwithstanding, a great part of this variability remains unknown. To a smaller or larger extent, genetic variability may contribute to the variability in response to these cardiovascular drugs. This review gives an overview of pharmacogenetic studies of genes that were reported to be associated with four commonly prescribed drugs/drug classes (platelet aggregation inhibitors, coumarins, antihypertensives and statins) and were studied at least 2 times with a similar outcome measure. In the field of cardiovascular drug therapy, polymorphisms in candidate genes such as the cycloxygenase-1, vitamin K reductase complex subunit 1, CYP2C9, alpha adducin and 3-hydroxy-3-methylglutaryl-CoA reductase have received a great amount of interest in the pharmacogenetics of aspirin, coumarins, antihypertensives and statins respectively. However, only variations in VKORC1 and CYP2C9 have consistently been associated with drug response (coumarins) and have clinical implications. Clinical trials should provide evidence for the effectiveness of genotyping before this procedure will be a part of every day anticoagulant therapy. In spite of the tremendous amount of publications in this field, there is no reason to advocate for genetic testing for any other drugs cardiovascular drug therapy yet. Current approaches in pharmacogenetic research do not seem to lead to results that meet our expectations of individualized medicine. Therefore, new approaches are needed addressing issues and challenges such as the number of SNPs studied, study power, study design and application of new statistical methods in (pharmaco-)genetic analysis.
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