Abstract / Summary
Objectives: Myocardial ischemia-reperfusion injury (MIRI) lacks effective multi-target interventions. Electroacupuncture (EA) shows cardioprotective potential, but its molecular mechanisms remain incompletely understood. This study aimed to investigate whether EA exerts cardioprotective effects by modulating myocardial miR-146a, a microRNA closely associated with inflammation and cardiovascular diseases.
Materials and methods: A rat model of MIRI was established, and Sprague-Dawley rats were divided into four groups: sham, MIRI, EA treatment, and miR-146a inhibition+EA. Cardiac function, infarct size, myocardial injury, apoptosis, and inflammatory cytokine levels were assessed using echocardiography, TTC staining, CK and LDH assays, TUNEL staining, and ELISA, respectively. The expression and cellular origin of miR-146a were assessed via qRT-PCR, and immunofluorescence.
Results: EA treatment significantly improved cardiac function, reduced infarct size, attenuated myocardial injury and apoptosis, and upregulated miR-146a expression in cardiomyocytes. In contrast, inhibition of miR-146a markedly attenuated the protective effects of EA and down-regulated the expression of angiogenic factors bFGF and VEGF, while compromising its anti-inflammatory actions. Furthermore, EA-mediated down-regulation of the inflammatory response was mediated through the miR-146a/TRAF6/IRAK4 pathway.
Conclusion: These findings suggest that EA may alleviate MIRI by upregulating myocardial miR-146a expression, providing novel molecular insights into the cardioprotective mechanisms of EA.