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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Mild mitochondrial uncoupling protects from ionizing radiation induced cell death by attenuating oxidative stress and mitochondrial damage
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Mild mitochondrial uncoupling protects from ionizing radiation induced cell death by attenuating oxidative stress and mitochondrial damage

机译:轻度线粒体脱耦通过衰减氧化应激和线粒体损伤来保护免受电离辐射诱导的细胞死亡

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Ionizing radiation (IR) induced mitochondrial dysfunction is associated with enhanced radiation stimulated metabolic oxidative stress that interacts randomly with intracellular bio-macromolecules causing lethal cellular injury and cell death. Since mild mitochondrial uncoupling emerged as a valuable therapeutic approach by regulating oxidative stress in most prevalent human diseases including ageing, ischemic reperfusion injury, and neurodegeneration with comparable features of IR inflicted mitochondrial damage. Therefore, we explored whether mitochondrial uncoupling could also protect from IR induced cytotoxic insult. Our results showed that DNP, BHT, FCCP, and BAM15 are safe to cells at different concentrations range depending on their respective mitochondrial uncoupling potential. Pre-incubation of murine fibroblast (NIH/3T3) cells with the safe concentration of these uncouplers followed by gamma (gamma)-radiation showed significant cell growth recovery, reduced ROS generation, and apoptosis, compared to IR treatment alone. We observed that DNP pre-treatment increased the surviving fraction of IR exposed HEK-293, Raw 264.7 and NIH/3T3 cells. Additionally, DNP pretreatment followed by IR leads to reduced total and mitochondrial oxidative stress (mos), regulated calcium (Ca2+) homeostasis, and mitochondrial bioenergetics in NIH/3T3 cells. It also significantly reduced macro-molecular oxidation, correlated with the regulated ROS generation and antioxidant defence system. Moreover, DNP facilitated DNA repair kinetics evidenced by reducing the number of y-H2AX foci formation and fragmented nuclei with time. DNP pre-incubation restrained the radiation induced pro-apoptotic factors and inhibits apoptosis. Our findings raise the possibility that mild mitochondrial uncoupling with DNP could be a potential therapeutic approach for radiation induced cytotoxic insult associated with an altered mitochondrial function.
机译:电离辐射(IR)诱导的线粒体功能障碍与增强的辐射有关,刺激刺激的代谢氧化应激,其随机与导致致命细胞损伤和细胞死亡的细胞内生物大分子相互作用。由于温和的线粒体解耦,通过调节大多数普遍的人类疾病中的氧化应激,包括老化,缺血再灌注损伤和神经变性的氧化胁迫,因为具有IR造成的线粒体损伤的可比特征,因此通过调节氧化胁迫是一种有价值的治疗方法。因此,我们探讨了线粒体脱象是否也可以保护IR诱导的细胞毒性损伤。我们的结果表明,根据其各自的线粒体脱象潜力,DNP,BHT,FCCP和BAM15对不同浓度范围的细胞是安全的。与单独的IR治疗相比,具有这些脱象的鼠成纤维细胞(NIH / 3T3)细胞的预孵育,随后是γ(γ)的γ(γ)分析显示出显着的细胞生长回收,降低的ROS生成和凋亡。我们观察到DNP预处理增加了IR暴露HEK-293,RAW 264.7和NIH / 3T3细胞的存活率。另外,DNP预处理之后是IR导致NIH / 3T3细胞中的总和线粒体氧化应激(MOS),受管制钙(CA2 +)稳态和线粒体生物能量学。它还显着降低了宏观分子氧化,与调节的ROS生成和抗氧化防御系统相关。此外,DNP促进的DNA修复动力学通过减少Y-H2AX焦化形成和碎裂的核随时间来证明。 DNP预孵育抑制了辐射诱导的促凋亡因子并抑制细胞凋亡。我们的研究结果提高了与DNP的轻微线粒体解耦可能是辐射诱导与改变的线粒体功能相关的细胞毒性损伤的潜在治疗方法。

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