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Published on: February 26, 2013
Redox State in Atrial Fibrillation Pathogenesis and Relevant Therapeutic Approaches
Alexios S Antonopoulos1, Athina Goliopoulou1, Evangelos Oikonomou1
11st Cardiology Department, Athens Medical School, Athens, Greece.
Insights
Targeting atrial redox state is crucial for heart health, but antioxidant therapies have not yet proven effective in preventing atrial fibrillation in clinical trials despite promising animal study results.
Area of Science:
- Cardiovascular Research
- Electrophysiology
- Oxidative Stress Biology
Background:
- Myocardial redox state significantly influences atrial biology, affecting cardiomyocyte apoptosis, ion channel function, and cardiac remodeling.
- The therapeutic potential of targeting atrial redox state for atrial fibrillation (AF) prevention remains largely unexplored.
Purpose of the Study:
- To comprehensively review the role of atrial redox state in the pathogenesis of atrial fibrillation.
- To evaluate the efficacy of antioxidant therapies in preventing atrial fibrillation.
Main Methods:
- Systematic literature search of Medline for experimental and clinical studies.
- Inclusion of evidence linking myocardial redox state to AF pathogenesis.
- Analysis of studies investigating redox-targeting therapies for AF prevention.
Main Results:
- Animal models demonstrate that altered nitroso-redox balance and NADPH oxidase activity are key in AF development.
- Increased reactive oxygen and nitrogen species in atrial tissue correlate with altered myocyte electrophysiology and electrical remodeling in animal studies.
- Human randomized clinical trials using redox-modulating therapies (statins, antioxidants) have failed to show benefits in preventing AF, particularly post-operative AF.
Conclusions:
- While experimental and translational data strongly implicate atrial redox state in AF pathogenesis, this has not translated into clinical benefits.
- Current redox-related therapies have not demonstrated efficacy in preventing atrial fibrillation in human clinical studies.
Background:
Myocardial redox state is a critical determinant of atrial biology, regulating cardiomyocyte apoptosis, ion channel function, and cardiac hypertrophy/fibrosis and function. Nevertheless, it remains unclear whether the targeting of atrial redox state is a rational therapeutic strategy for atrial fibrillation prevention.
Objective:
To review the role of atrial redox state and anti-oxidant therapies in atrial fibrillation.
Method:
Published literature in Medline was searched for experimental and clinical evidence linking myocardial redox state with atrial fibrillation pathogenesis as well as studies looking into the role of redoxtargeting therapies in the prevention of atrial fibrillation.
Results:
Data from animal models have shown that altered myocardial nitroso-redox balance and NADPH oxidases activity are causally involved in the pathogenesis of atrial fibrillation. Similarly experimental animal data supports that increased reactive oxygen / nitrogen species formation in the atrial tissue is associated with altered electrophysiological properties of atrial myocytes and electrical remodeling, favoring atrial fibrillation development. In humans, randomized clinical studies using redox-related therapeutic approaches (e.g. statins or antioxidant agents) have not documented any benefits in the prevention of atrial fibrillation development (mainly post-operative atrial fibrillation risk).
Conclusion:
Despite strong experimental and translational data supporting the role of atrial redox state in atrial fibrillation pathogenesis, such mechanistic evidence has not been translated to clinical benefits in atrial fibrillation risk in randomized clinical studies using redox-related therapies.
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