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Effects of Low Concentrations of Rotenone Upon Mitohormesis in SH-SY5Y Cells

机译:低浓度鱼酮对SH-SY5Y细胞线粒体富集的影响

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The mitochondrial toxin rotenone exerts cytotoxicity via overproduction of reactive oxygen species (ROS) and depolarization of the mitochondrial membrane. We investigated the effects of rotenone (12.5, 25, 50, 100 nmol/L) on mitochondrial biogenesis and the potential roles of ROS production in SH-SY5Y cells. Mitochondrial biogenesis was assessed by counting the number of mitochondria, determining protein expression of peroxisome proliferator-activated receptor γ coactivator α (PGC1-α) and its regulator, SIRT1, and oxygen consumption. ROS production and levels of reduced glutathione (GSH) and oxidized glutathione(GSSG) were also determined. Compared with controls, rotenone (12.5 nmol/L) significantly increased the quantity of mitochondria and amount of oxygen consumption, whereas rotenone at >12.5 nmol/L decreased the quantity of mitochondria and amount of oxygen consumption. GSH contents and GSH/GSSG were also significantly enhanced by rotenone at 12.5 nmol/L and decreased by rotenone at >12.5 nmol/L. Except for ROS production and SIRT1 protein expression, all concentration–response relationships showed a typical inverted-U shape. ROS production was continually increased in cells treated with rotenone. These data indicate that low concentrations of rotenone can induce mitohormesis, which may be attributed to ROS production.
机译:线粒体毒素鱼藤酮通过活性氧(ROS)的过量产生和线粒体膜的去极化作用发挥细胞毒性作用。我们调查了鱼藤酮(12.5、25、50、100 nmol / L)对线粒体生物发生的影响以及ROS在SH-SY5Y细胞中产生的潜在作用。通过计数线粒体的数量,确定过氧化物酶体增殖物激活的受体γ共激活因子α(PGC1-α)及其调节剂,SIRT1和耗氧量来评估线粒体的生物发生。还测定了ROS的产生以及还原型谷胱甘肽(GSH)和氧化型谷胱甘肽(GSSG)的水平。与对照组相比,鱼藤酮(12.5 nmol / L)显着增加了线粒体的量和耗氧量,而鱼藤酮> 12.5 nmol / L则降低了线粒体的量和耗氧量。鱼藤酮在12.5 nmol / L下也显着提高了GSH含量和GSH / GSSG,而鱼藤酮在> 12.5 nmol / L下也降低了GSH和GSH / GSSG。除ROS产生和SIRT1蛋白表达外,所有浓度-反应关系均呈典型的倒U形。鱼藤酮处理的细胞中ROS的产生持续增加。这些数据表明低浓度的鱼藤酮可以诱导线粒体增加,这可能归因于ROS的产生。

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