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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Oxygen and glucose deprivation induces mitochondrial dysfunction and oxidative stress in neurones but not in astrocytes in primary culture.
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Oxygen and glucose deprivation induces mitochondrial dysfunction and oxidative stress in neurones but not in astrocytes in primary culture.

机译:缺氧和葡萄糖剥夺会在原代培养的神经元中诱导线粒体功能障碍和氧化应激,但在星形胶质细胞中则不会。

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摘要

In order to investigate the potential neuroprotective role played by glucose metabolism during brain oxygen deprivation, the susceptibility of cultured neurones and astrocytes to 1 h of oxygen deprivation (hypoxia) or oxygen and glucose deprivation (OGD) was examined. OGD, but not hypoxia, promotes dihydrorhodamine 123 and glutathione oxidation in neurones but not in astrocytes reflecting free radical generation in the former cells. A specific loss of mitochondrial complex-I activity, mitochondrial membrane potential collapse, ATP depletion and necrosis occurred in the OGD neurones, but not in the OGD astrocytes. Furthermore, superoxide anion but not nitric oxide formation was responsible for these effects. OGD decreased neuronal but not astrocytic NADPH concentrations; this was not observed in hypoxia and was independent of superoxide or nitric oxide formation. These results suggest that glucose metabolism would supply NADPH, through the pentose-phosphate pathway, aimed at preventing oxidative stress, mitochondrial damage and neurotoxicity during oxygen deprivation to neural cells.
机译:为了研究葡萄糖代谢在脑缺氧过程中可能发挥的神经保护作用,研究了培养的神经元和星形胶质细胞对缺氧(缺氧)或缺氧缺糖1小时(OGD)的敏感性。 OGD可以促进神经元中的二氢罗丹明123和谷胱甘肽氧化,但不能降低缺氧,但在星形胶质细胞中却不能,反映了前者细胞中自由基的产生。特定的线粒体复合物I活性丧失,线粒体膜电位崩溃,ATP耗竭和坏死在OGD神经元中发生,但在OGD星形胶质细胞中未发生。此外,超氧阴离子而不是一氧化氮的形成是这些作用的原因。 OGD降低神经元,而非星形胶质细胞NADPH浓度;在缺氧状态下未观察到此现象,并且与超氧化物或一氧化氮的形成无关。这些结果表明,葡萄糖代谢将通过戊糖-磷酸途径提供NADPH,目的在于防止在神经细胞缺氧期间氧化应激,线粒体损伤和神经毒性。

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