[No authors listed]
Myocardial infarction (MI) is the most common event in cardiovascular disease. Carvedilol, a βâblocker with multiple pleiotropic actions, is widely used for the treatment cardiovascular diseases. However, the underlying mechanisms of carvedilol on alleviating MI are not fully understood. The aim of the present study was to investigate whether the beneficial effects of carvedilol were associated with regulation of microRNAâ1 (miRâ1). It was demonstrated that carvedilol ameliorated impaired cardiac function and decreased infarct size in a rat model of MI induced by coronary artery occlusion. Similarly, carvedilol reversed the H2O2âinduced decrease in cardiomyocyte viability in a doseâdependent manner. The in vivo and in vitro models demonstrated the downregulation of miRâ1 following treatment with carvedilol. Overexpression of miRâ1, a known proâapoptotic miRNA, decreased cell viability and induced cell apoptosis. Transfection of miRâ1 abolished the beneficial effects of carvedilol. The expression of heat shock protein 60 (HSP60), a direct target of miRâ1, was identified to be decreased in MI and H2O2âinduced apoptosis, which was associated with a decrease in Bclâ2 and an increase in Bax; expression was restored following treatment with carvedilol. It was concluded that carvedilol partially exhibited its beneficial effects by downregulating miRâ1 and increasing HSP60 expression. miRâ1 has become a member of the group of carvedilolâresponsive miRNAs. Future studies are required to fully elucidate the potential overlapping or compensatory effects of known carvedilolâresponsive miRNAs and their underlying mechanisms of action in the pathophysiology of cardiovascular diseases.
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