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Melatonin protects against diabetic cardiomyopathy through Mst1/Sirt3 signaling

机译:褪黑激素通过MST1 / SIRT3信号传导来防止糖尿病心肌病

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Abstract This study investigated the effects of melatonin on diabetic cardiomyopathy ( DCM ) and determined the underlying mechanisms. Echocardiography indicated that melatonin notably mitigated the adverse left ventricle remodeling and alleviated cardiac dysfunction in DCM . The mechanisms were attributed to increased autophagy, reduced apoptosis, and alleviated mitochondrial dysfunction. Furthermore, melatonin inhibited Mst1 phosphorylation and promoted Sirt3 expression in DCM . These results indicated that melatonin may exert its effects through Mst1/Sirt3 signaling. To verify this hypothesis, a DCM model using Mst1 transgenic (Mst1 Tg) and Mst1 knockout (Mst1 ?/? ) mice was constructed. As expected, melatonin increased autophagy, reduced apoptosis and improved mitochondrial biogenesis in Mst1 Tg mice subjected to DCM injury, while it had no effects on Mst1 ?/? mice. In addition, cultured neonatal mouse cardiomyocytes were subjected to simulated diabetes to probe the mechanisms involved. Melatonin administration promoted autophagic flux as demonstrated by elevated LC 3‐ II and lowered p62 expression in the presence of bafilomycin A1. The results suggest that melatonin alleviates cardiac remodeling and dysfunction in DCM by upregulating autophagy, limiting apoptosis, and modulating mitochondrial integrity and biogenesis. The mechanisms are associated with Mst1/Sirt3 signaling.
机译:摘要本研究调查了褪黑激素对糖尿病心肌病(DCM)的影响,并确定了潜在机制。超声心动图表明,褪黑素显着减轻了DCM中的不良左心室重塑和缓解心脏功能障碍。该机制归因于增加自噬,降低细胞凋亡,减轻线粒体功能障碍。此外,褪黑素抑制了MST1磷酸化并促进了DCM中的SIRT3表达。这些结果表明,褪黑素可以通过MST1 / SIRT3信号传导发挥其影响。为了验证该假设,构建了使用MST1转基因(MST1 TG)和MST1敲除(MST1≤/α)小鼠的DCM模型。正如预期的那样,褪黑素增加自噬,降低细胞凋亡和改善的MST1 TG小鼠在经过DCM损伤的情况下进行的线粒体生物发生,而对MST1没有影响?/?老鼠。此外,对培养的新生儿小鼠心肌细胞进行模拟糖尿病以探测所涉及的机制。褪黑激素给药促进了通过升高的LC 3-II的自噬助焊剂,并在BafiLomycin A1存在下降低P62表达。结果表明,褪黑激素通过上调自噬,限制细胞凋亡和调节线粒体完整性和生物发生,减轻了DCM中的心脏重塑和功能障碍。该机制与MST1 / SIRT3信令相关联。

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