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Oxidative stress in skeletal muscle impairs mitochondrial function in alloxan induced diabetic rats: Role of alpha lipoic acid

机译:骨骼肌中的氧化应激削弱了四氧嘧啶致糖尿病大鼠的线粒体功能:α硫辛酸的作用

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摘要

The role increased free radical production associated with mitochondrial dysfunction is well established in the pathophysiology of diabetes mellitus. A male Wistar rat model was utilized in which diabetes was induced by alloxan at a dose of 140. mg/kg body weight, intraperitoneally for 8 weeks. In alloxan induced diabetes on the activities of Krebs cycle enzymes, oxidative as well as enzymes involved in oxidative metabolism were altered. Oxidative damage to DNA, protein and lipid were observed, which provide insight into the association of elevated free radicals and mitochondrial dysfunction leading to diabetes mellitus. Lipoic acid treatment (100. mg/kg body weight for 30 days orally) restored mitochondrial functioning showing normal activity of TCA cycle enzyme with decreased free radical production and oxidative damage. Thus, our results propose that lipoic acid restores mitochondrial function in experimentally induced diabetic rats through decreasing levels of free radicals and promoting activation of Krebs cycle enzymes.
机译:与线粒体功能障碍有关的自由基产生增加的作用在糖尿病的病理生理学中已得到充分证实。使用雄性Wistar大鼠模型,其中由四氧嘧啶以140. mg / kg体重的剂量通过腹膜内诱导糖尿病,持续8周。在四氧嘧啶诱发的糖尿病中,Krebs循环酶的活性,氧化以及参与氧化代谢的酶均发生了改变。观察到对DNA,蛋白质和脂质的氧化损伤,这为深入了解自由基升高与线粒体功能障碍导致糖尿病的关联提供了见识。硫辛酸处理(口服100毫克/千克体重,持续30天)恢复了线粒体功能,显示出TCA循环酶的正常活性,自由基产生减少,氧化损伤减少。因此,我们的研究结果表明,硫辛酸通过降低自由基水平和促进Krebs循环酶的活化来恢复实验诱导的糖尿病大鼠的线粒体功能。

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