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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Pyruvate modifies glycolytic and oxidative metabolism of rat embryonic spinal cord astrocyte cell lines and prevents their spontaneous transformation.
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Pyruvate modifies glycolytic and oxidative metabolism of rat embryonic spinal cord astrocyte cell lines and prevents their spontaneous transformation.

机译:丙酮酸会改变大鼠胚胎脊髓星形胶质细胞系的糖酵解和氧化代谢,并阻止其自发转化。

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This study aimed to provide detailed data on mitochondrial respiration of normal astrocyte cell lines derived from rat embryonic spinal cord. Astrocytes in early passages (EP), cultured without pyruvate for more than 35 passages, defined here as late passages (LP), undergo spontaneous transformation. To study initial steps in cell transformation, EP data were compared with those of LP cells. LP cells had reduced glycolysis, fewer mitochondria and extremely low oxidative rates, resulting from a dysfunction of complexes I and II + III of the respiratory chain. Treatment of EP cells with pyruvate until they were, by definition, LP cultures prevented transformation of these cells. Pyruvate-treated EP cells had more mitochondria than normal cells but slightly lower respiratory rates. The increase of mitochondrial content thus appears to act as a compensatory effect to maintain oxidative phosphorylation in these LP 'non-transformed' cells, in which mitochondrial function is reduced. However, pyruvate treatment of transformed LP cells during additional passages did not significantly restore their oxidative metabolism. These data highlight changes accompanying spontaneous astrocyte transformation and suggest potential targets for the control of astrocyte proliferation and reaction to various insults to the central nervous system.
机译:这项研究旨在提供有关源自大鼠胚胎脊髓的正常星形胶质细胞系线粒体呼吸的详细数据。在没有丙酮酸的情况下培养超过35代的早期传代(EP)中的星形胶质细胞(此处定义为后期传代(LP))经历自发转化。为了研究细胞转化的初始步骤,将EP数据与LP细胞的数据进行了比较。 LP细胞由于呼吸链复合物I和II + III的功能异常而减少了糖酵解,减少了线粒体并且氧化速率极低。用丙酮酸处理EP细胞,直到按照定义,它们被LP培养物阻止了这些细胞的转化。丙酮酸处理过的EP细胞比正常细胞具有更多的线粒体,但呼吸频率略低。因此,线粒体含量的增加似乎起到了补偿作用,以维持这些LP“非转化”细胞中线粒体功能降低的氧化磷酸化作用。然而,在另外的传代过程中,丙酮酸处理转化的LP细胞不能显着恢复其氧化代谢。这些数据突出了自发性星形胶质细胞转化所伴随的变化,并提出了控制星形胶质细胞增殖和对中枢神经系统各种损伤反应的潜在靶标。

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