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Diabetes associated cell stress and dysfunction: role of mitochondrial and non-mitochondrial ROS production and activity.

机译:糖尿病相关的细胞应激和功能障碍:线粒体和非线粒体ROS产生和活性的作用。

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摘要

It is now widely accepted, given the current weight of experimental evidence, that reactive oxygen species (ROS) contribute to cell and tissue dysfunction and damage caused by glucolipotoxicity in diabetes. The source of ROS in the insulin secreting pancreatic beta-cells and in the cells which are targets for insulin action has been considered to be the mitochondrial electron transport chain. While this source is undoubtably important, we provide additional information and evidence for NADPH oxidase-dependent generation of ROS both in pancreatic beta-cells and in insulin sensitive cells. While mitochondrial ROS generation may be important for regulation of mitochondrial uncoupling protein (UCP) activity and thus disruption of cellular energy metabolism, the NADPH oxidase associated ROS may alter parameters of signal transduction, insulin secretion, insulin action and cell proliferation or cell death. Thus NADPH oxidase may be a useful target for intervention strategies based on reversing the negative impact of glucolipotoxicity in diabetes.
机译:鉴于目前的实验证据,现在已被广泛接受,活性氧(ROS)会导致细胞和组织功能障碍以及糖尿病中糖脂毒性引起的损害。胰岛素分泌性胰腺β细胞和作为胰岛素作用靶标的细胞中ROS的来源被认为是线粒体电子转运链。尽管这一来源无疑是重要的,但我们提供了有关胰腺β细胞和胰岛素敏感性细胞中NADPH氧化酶依赖性ROS生成的其他信息和证据。虽然线粒体ROS的产生对于调节线粒体解偶联蛋白(UCP)的活性并因此破坏细胞能量代谢可能很重要,但NADPH氧化酶相关的ROS可能会改变信号传导,胰岛素分泌,胰岛素作用和细胞增殖或细胞死亡的参数。因此,NADPH氧化酶可能是基于逆转糖脂毒性对糖尿病的负面影响的干预策略的有用靶标。

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