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Diabetes induces the activation of pro-ageing miR-34a in the heart, but has differential effects on cardiomyocytes and cardiac progenitor cells

机译:糖尿病在心脏中诱导激活促老化miR-34a,但对心肌细胞和心脏祖细胞具有差异影响

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Increased apoptosis and premature cellular ageing of the diabetic heart underpin the development of diabetic heart disease. The molecular mechanisms underlying these pathologies are still unclear. Here we determined the role of pro-senescence microRNA (miR)-34a in accelerating the ageing of the diabetic heart. RT-PCR analysis showed a significant increase in the level of circulating miR-34a from early stages in asymptomatic type-2 diabetic individuals compared to non-diabetic controls. We also observed significant upregulation of miR-34a in the type-2 human diabetic heart suggesting circulating miR-34a may be cardiac in origin. Moreover, western blot analysis identified marked downregulation of the pro-survival protein sirtuin 1 (SIRT1), a direct target of miR-34a. Analysis of cultured human adult cardiomyocytes exposed to high glucose and cardiac progenitor cells (CPCs) isolated from the diabetic heart confirmed significant upregulation of miR-34a and downregulation of SIRT1, associated with a marked increase in pro-apoptotic caspase-3/7 activity. Although therapeutic inhibition of miR-34a activity restored SIRT1 expression in both cardiomyocytes and CPCs, p53 expression was further upregulated in cardiomyocytes but conversely downregulated in CPCs. In spite of increased p53, miR-34a inhibition significantly reduced high glucose induced apoptotic cell death in cardiomyocytes. However, this effect was not observed in CPCs, which in fact showed reduced proliferation following miR-34a inhibition. Taken together, our results demonstrate upregulation of miR-34a in the diabetic heart and in the circulation from an early stage of the disease. However, inhibition of miR-34a activity has differential effects depending on the cell type, thereby warranting the need to eliminate off-target effects when introducing miR-based therapy.
机译:糖尿病心脏的凋亡和过早细胞衰老增加了糖尿病心脏病的发展。这些病理学的分子机制仍然不清楚。在这里,我们确定了促衰老microRNA(miR)-34a加速糖尿病心脏老化的作用。与非糖尿病对照相比,RT-PCR分析显示无症状-2糖尿病个体中早期阶段的循环miR-​​34a水平的显着增加。我们还观察到2型人糖尿病心脏中的miR-34a的显着上调,表明循环miR-​​34a可能是心脏的。此外,蛋白质印迹分析鉴定了髓质蛋白Sirtuin 1(SIRT1)的标记下调,是miR-34a的直接靶标。从糖尿病心脏中分离的高葡萄糖和心脏祖细胞(CPC)暴露的人成人心肌细胞的分析证实了MIR-34A的显着上调和SIRT1的下调,与促凋亡Caspase-3/7活性的显着增加相关。尽管MiR-34A活性的治疗抑制恢复了心肌细胞和CPC中的SIRT1表达,但在心肌细胞中进一步上调p53表达,但在CPC中相反地下调。尽管P53增加,miR-34a抑制显着降低了心肌细胞的高葡萄糖诱导的凋亡细胞死亡。然而,在CPC中未观察到这种效果,其实际上表明MIR-34A抑制后的增殖降低。我们的结果一起携带,展示了糖尿病心脏中miR-34a的上调,并从疾病的早期阶段循环。然而,根据细胞类型,抑制miR-34a活性具有差异影响,从而在引入基于miR的疗法时需要消除脱靶效果的需要。

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