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Mitochondrial Function and Diabetes: Consequences for Skeletal and Cardiac Muscle Metabolism

机译:线粒体功能和糖尿病:骨骼和心脏肌肉代谢的后果。

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Significance: An early hallmark in the development of type 2 diabetes is the resistance to the effect of insulin in skeletal muscle and in the heart. Since mitochondrial function was found to be diminished in patients with type 2 diabetes, it was suggested that this defect might be involved in the etiology of insulin resistance. Although several hypotheses were suggested, yet unclear is the mechanistic link between these two phenomena. Recent Advances: Herein, we review the evidence for disturbances in mitochondrial function in skeletal muscle and the heart in the diabetic state. Also the mechanisms involved in improving mitochondrial function are considered and, whenever possible, human data is cited. Critical Issues: Reported evidence shows that interventions that improve skeletal muscle mitochondrial function also improve insulin sensitivity in humans. In the heart, available data from animal studies suggests that enhancement of mitochondrial function can reverse aging-induced changes in heart function, and can be protective against cardiomyopathy and heart failure. Future Directions: Mitochondria and their functions can be targeted with the aim of improving skeletal muscle insulin sensitivity and cardiac function. However, human clinical intervention studies are needed to fully substantiate the potential of mitochondria as a target to prevent cardiometabolic disease.
机译:意义:2型糖尿病发展的早期特征是对骨骼肌和心脏中胰岛素作用的抵抗。由于发现2型糖尿病患者的线粒体功能减弱,因此提示该缺陷可能与胰岛素抵抗的病因有关。尽管提出了几种假设,但尚不清楚这两种现象之间的机理联系。最新进展:在本文中,我们回顾了糖尿病状态下骨骼肌和心脏线粒体功能紊乱的证据。还考虑了涉及改善线粒体功能的机制,并在可能的情况下引用了人类数据。关键问题:报道的证据表明,改善骨骼肌线粒体功能的干预措施还可以改善人体对胰岛素的敏感性。在心脏中,来自动物研究的可用数据表明,线粒体功能的增强可以逆转衰老引起的心脏功能变化,并可以预防心肌病和心力衰竭。未来方向:线粒体及其功能可以作为目标,以改善骨骼肌胰岛素敏感性和心脏功能。然而,需要人类临床干预研究来充分证实线粒体作为预防心脏代谢疾病的靶标的潜力。

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