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Genetically Determined Response to Atenolol in Patients With Persistent Atrial Fibrillation

NCT01719367

NAINTERVENTIONAL
Vanderbilt University Medical Center
38 participants
Started 2013-01 · Completed 2016-09
Status: Completed (as of 12-23-2025)

Conditions

Atrial Fibrillation

Interventions

Linked Papers (from SciSciNet-V2)

Total Papers15
Background
1
Result
0
Derived
0
Unknown
14

Total Citations Per Year

Brief Summary

Atrial fibrillation (AF), the most common sustained heart rhythm disorder, is becoming increasingly prevalent in the Western world. The number of people with AF in the United States is projected to roughly double by the year 2050, to an estimated 6-12 million. For many patients with AF, rate control with atrioventricular (AV) node blockers is a widely accepted therapeutic strategy. These agents control heart rate, thus preventing symptoms and systolic heart failure associated with tachycardia due to a rapid ventricular response to AF. Beta-blockers are widely accepted as first line agents for rate control in AF, especially when patients have concomitant hypertension (HTN), coronary artery disease, cardiomyopathies, or heart failure (HF). As a class, beta-blockers are among the most commonly prescribed cardiovascular medications. Among patients with AF treated with beta-blockers, the heart rate (HR) response varies substantially. Sometimes, adequate rate control can be achieved by titration of the beta-blocker dose; but frequently, additional AV nodal blockers and/or digoxin are necessary. In some cases, adequate rate control cannot be achieved even with the simultaneous use of multiple AV nodal blockers, necessitating mechanical ablation of the AV node and permanent pacemaker implantation. Patient-specific variables that influence the response to beta-blockers include comorbid conditions, weight, age, and level of physical activity. Ethnic differences in the response to beta-blockers for the treatment of HTN and HF are well-described. However, the contribution of genetic variants to beta-blocker efficacy in AF is unknown. We propose to study whether the ADRB1 Gly389Asp SNP reduces response to beta-blockade in subjects with permanent AF.

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Unknown Papers14

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ACC/AHA/ESC 2006 Guidelines for the Management of Patients With Atrial Fibrillation—Executive Summary
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A Four Amino Acid Deletion Polymorphism in the Third Intracellular Loop of the Human α2C-Adrenergic Receptor Confers Impaired Coupling to Multiple Effectors
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β1-Adrenergic receptor polymorphisms influence the response to metoprolol monotherapy in patients with essential hypertension
2006
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Synergistic polymorphisms of β1 and α2C-adrenergic receptors and the influence on left ventricular ejection fraction response to β-blocker therapy in heart failure
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Genetic factors in the electrocardiogram and heart rate of twins reared apart and together
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76 citations
Variability of heart rate, P-R, QRS and Q-T durations in twins
1980
64 citations
Functional responses of human ??1 adrenoceptors with defined haplotypes for the common 389R>G and 49S>G polymorphisms
2004
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