Key result
Nitro-oleic acid (6 mg/kg) significantly inhibited atrial fibrosis and depressed vulnerability for atrial fibrillation to levels observed in angiotensin II-naive mice.
Why the study?
Does nitro-oleic acid prevent atrial fibrosis and atrial fibrillation vulnerability in an angiotensin II-treated mouse model?
Does nitro-oleic acid prevent atrial fibrosis and atrial fibrillation vulnerability in an angiotensin II-treated mouse model?
Nitro-oleic acid suppresses angiotensin II-mediated atrial fibrosis and reduces vulnerability to atrial fibrillation in a mouse model, suggesting a potential therapeutic role for lipid electrophiles.
Nitro-fatty acids limit atrial fibrosis and AF in mice; hypothesis-generating for human AF therapies.
AIM: Atrial fibrosis, one of the most striking features in the pathology of atrial fibrillation (AF), is promoted by local and systemic inflammation. Electrophilic fatty acid nitroalkenes, endogenously generated by both metabolic and inflammatory reactions, are anti-inflammatory mediators that in synthetic form may be useful as drug candidates. Herein we investigate whether an exemplary nitro-fatty acid can limit atrial fibrosis and AF. METHODS AND RESULTS: Wild-type C57BL6/J mice were treated for 2 weeks with angiotensin II (AngII) and vehicle or nitro-oleic acid (10-nitro-octadec-9-enoic acid, OA-NO2, 6 mg/kg body weight) via subcutaneous osmotic minipumps. OA-NO2 significantly inhibited atrial fibrosis and depressed vulnerability for AF during right atrial electrophysiological stimulation to levels observed for AngII-naive animals. Left atrial epicardial mapping studies demonstrated preservation of conduction homogeneity by OA-NO2. The protection from fibrotic remodelling was mediated by suppression of Smad2-dependent myofibroblast transdifferentiation and inhibition of Nox2-dependent atrial superoxide formation. CONCLUSION: OA-NO2 potently inhibits atrial fibrosis and subsequent AF. Nitro-fatty acids and possibly other lipid electrophiles thus emerge as potential therapeutic agents for AF, either by increasing endogenous levels through dietary modulation or by administration as synthetic drugs.
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Rudolph et al. (2015) studied Atrial fibrosis and atrial fibrillation. Nitro-oleic acid (OA-NO2) vs. Vehicle was evaluated on Atrial fibrosis and vulnerability for atrial fibrillation. Nitro-oleic acid (6 mg/kg) significantly inhibited atrial fibrosis and depressed vulnerability for atrial fibrillation to levels observed in angiotensin II-naive mice.
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