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Genetic tailoring of pharmacotherapy in heart failure: optimize the old, while we wait for something new
Jasmine A Talameh1, Howard L McLeod, Kirkwood F Adams
1Eshelman School of Pharmacy, University of North Carolina, Chapel Hill, USA.
Insights
Genetic variations influence how patients respond to heart failure (HF) medications. Certain genetic variants show promise in predicting benefits from beta-blockers and angiotensin-converting enzyme (ACE) inhibitors in HF patients.
Area of Science:
- Pharmacogenetics
- Cardiovascular Medicine
- Genetics
Background:
- Beta-blockers and ACE inhibitors are crucial for heart failure (HF) treatment.
- Individual responses to these drugs vary significantly.
- Genetic factors may explain some of this response variability.
Purpose of the Study:
- To review the current understanding of pharmacogenetics for beta-blockers and ACE inhibitors in HF.
- To identify genetic variants associated with drug response in HF patients.
Main Methods:
- A literature search of the PubMed database was conducted for studies on beta-blocker and ACE inhibitor pharmacogenetics in HF patients.
- Identified 30 beta-blocker and 10 ACE inhibitor pharmacogenetic studies published from 1966 to July 2011.
Main Results:
- The ACE deletion variant correlated with improved survival from both ACE inhibitors and beta-blockers.
- Specific beta-1 adrenergic receptor (Ser49), alpha-2C adrenergic receptor (insertion), and G-protein-coupled receptor kinase 5 (Gln41) variants were linked to better outcomes with beta-blockers.
- Many identified associations require further validation.
Conclusions:
- The field of HF pharmacogenetics is nascent but shows potential.
- Candidate genetic variants may help personalize HF treatment with beta-blockers and ACE inhibitors.
- Identifying genetic predispositions could guide the need for additional therapies in some HF patients.
Background:
The combination of angiotensin-converting enzyme (ACE) inhibitors and beta-adrenergic receptor blockers remains the essential component of heart failure (HF) pharmacotherapy. However, individual patient responses to these pharmacotherapies vary widely. The variability in response cannot be explained entirely by clinical characteristics, and genetic variation may play a role. The purpose of this review is to examine our current state of understanding of beta-blocker and ACE inhibitor pharmacogenetics in HF.
Methods And Results:
Beta-blocker and ACE inhibitor pharmacogenetic studies performed in patients with HF were identified from the Pubmed database from 1966 to July 2011. Thirty beta-blocker and 10 ACE inhibitor pharmacogenetic studies in patients with HF were identified. The ACE deletion variant was associated with greater survival benefit from ACE inhibitors and beta-blockers compared with the ACE insertion. Ser49 in the beta-1 adrenergic receptor, the insertion in the alpha-2C adrenergic receptor, and Gln41 in G-protein-coupled receptor kinase 5 are associated with greater survival benefit from beta-blockers, compared with Gly49, the deletion, and Leu41, respectively. However, many of these associations have not been validated.
Conclusions:
The HF pharmacogenetic literature is still in its very early stages, but there are promising candidate genetic variants that may identify which HF patients are most likely to benefit from beta-blockers and ACE inhibitors and patients that may require additional therapies.
Related Concept Videos
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