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Pyrogallol as a glutathione depletor induces apoptosis in HeLa cells.

机译:邻苯三酚作为谷胱甘肽耗竭剂可诱导HeLa细胞凋亡。

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Pyrogallol, a polyphenol, is known to be a superoxide anion (O2(.-)) generator. We investigated the involvement of glutathione (GSH) and reactive oxygen species (ROS) in pyrogallol-induced HeLa cell death. We measured the changes of ROS levels, GSH levels, sub-G1 cells, annexin V/PI staining cells and mitochondria membrane potential (DeltaPsi m) in HeLa cells treated with pyrogallol and/or ROS scavenger. The intracellular ROS levels were decreased or increased depending on the concentration of pyrogallol. The level of O2(.-) was significantly increased and superoxide dismutase (SOD) activity was down-regulated by pyrogallol. Pyrogallol reduced intracellular GSH content in HeLa cells. The ROS scavengers, Tempol, Tiron, Trimetazidine and N-acetylcysteine (NAC), did not down-regulate the production of O2(.-). However, treatment with NAC showed the recovery of GSH depletion and significantly rescued cells from pyrogallol-induced apoptosis. In addition, the recovery of GSH depletion by SOD and catalase was accompanied by the decrease of apoptosis levels. Furthermore, NAC and SOD significantly inhibited CMF-negative (GSH-depleted) and PI-positive cells induced by pyrogallol. Taken together, pyrogallol potently increased intracellular O2(.-) levels and decreased GSH content in HeLa cells, and NAC, SOD and catalase significantly rescued HeLa cells from pyrogallol-induced apoptosis accompanied by the recovery of GSH depletion.
机译:邻苯三酚是一种多酚,已知是一种超氧阴离子(O2(.-))生成剂。我们调查了谷胱甘肽(GSH)和活性氧(ROS)在邻苯三酚诱导的HeLa细胞死亡中的参与。我们测量了用邻苯三酚和/或ROS清除剂处理的HeLa细胞中ROS水平,GSH水平,sub-G1细胞,膜联蛋白V / PI染色细胞和线粒体膜电位(DeltaPsi m)的变化。细胞内ROS水平根据邻苯三酚的浓度而降低或升高。邻苯三酚可显着提高O2(.-)的水平,并下调超氧化物歧化酶(SOD)的活性。邻苯三酚会降低HeLa细胞的细胞内GSH含量。 ROS清除剂Tempol,Tiron,Trimetazidine和N-乙酰半胱氨酸(NAC)不会下调O2(.-)的产生。但是,NAC处理显示GSH耗竭得以恢复,并且细胞从邻苯三酚诱导的细胞凋亡中得到了挽救。此外,SOD和过氧化氢酶可恢复GSH耗竭,并伴随凋亡水平降低。此外,NAC和SOD显着抑制了邻苯三酚诱导的CMF阴性(GSH耗竭)和PI阳性细胞。两者合计,邻苯三酚有效地增加了HeLa细胞中的细胞内O2(.-)水平并降低了GSH含量,而NAC,SOD和过氧化氢酶可从邻苯三酚诱导的细胞凋亡中显着拯救HeLa细胞,并恢复GSH耗竭。

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