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Hypoxic-Ischemic Injury in the Developing Brain: The Role of Reactive Oxygen Species Originating in Mitochondria

机译:发育性脑缺氧缺血性损伤:线粒体中活性氧的作用

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Mitochondrial dysfunction is the most fundamental mechanism of cell damage in cerebral hypoxia-ischemia and reperfusion. Mitochondrial respiratory chain (MRC) is increasingly recognized as a source for reactive oxygen species (ROS) in the postischemic tissue. Potentially, ROS originating in MRC can contribute to the reperfusion-driven oxidative stress, promoting mitochondrial membrane permeabilization. The loss of mitochondrial membranes integrity during reperfusion is considered as the major mechanism of secondary energy failure. This paper focuses on current data that support a pathogenic role of ROS originating from mitochondrial respiratory chain in the promotion of secondary energy failure and proposes potential therapeutic strategy against reperfusion-driven oxidative stress following hypoxia-ischemia-reperfusion injury of the developing brain.
机译:线粒体功能障碍是脑缺氧缺血和再灌注中细胞损伤的最基本机制。线粒体呼吸链(MRC)日益被认为是缺血后组织中活性氧(ROS)的来源。潜在地,起源于MRC的ROS可能有助于再灌注驱动的氧化应激,促进线粒体膜通透性。再灌注过程中线粒体膜完整性的丧失被认为是继发性能量衰竭的主要机制。本文着眼于目前的数据,这些数据支持源自线粒体呼吸链的ROS在促进继发性能量衰竭中的致病作用,并提出了针对发展中脑缺氧-缺血-再灌注损伤后再灌注驱动的氧化应激的潜在治疗策略。

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