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首页> 外文期刊>Antioxidants and redox signalling >Amplification of a reactive oxygen species signal in axotomized retinal ganglion cells.
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Amplification of a reactive oxygen species signal in axotomized retinal ganglion cells.

机译:轴突切除的视网膜神经节细胞中活性氧种类信号的放大。

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Retinal ganglion cells (RGCs) undergo apoptosis after axonal injury. Elucidation of the sequence of intracellular events proximal to caspase activation may allow development of effective neuroprotective strategies. In this study, we explored the role that reactive oxygen species may have in signaling RGC apoptosis after axonal injury. Using the fluorescent probe dihydroethidium, we were able to measure intracellular superoxide anion production. We found that axotomized RGCs exposed to oxidative stress exhibited a secondary superoxide burst. The broad-spectrum caspase inhibitor Z-Val-Ala-DL-Asp-fluoromethyl ketone did not block the burst, suggesting it is proximal to caspase activation, but it was inhibited by cycloheximide, consistent with a requirement for protein synthesis. These results are consistent with RGC axotomy inducing synthesis of one or more proteins that mediate oxidative amplification. This could be an early event in signaling of RGC apoptosis after axonal injury.
机译:视网膜神经节细胞(RGCs)在轴突损伤后经历凋亡。阐明半胱天冬酶激活附近的细胞内事件的序列可能允许开发有效的神经保护策略。在这项研究中,我们探讨了活性氧在轴突损伤后可能在信号RGC凋亡中发挥作用。使用荧光探针二氢乙啶,我们能够测量细胞内超氧阴离子的产生。我们发现暴露于氧化应激的轴突化RGC表现出二次超氧化物的爆发。广谱半胱天冬酶抑制剂Z-Val-Ala-DL-Asp-氟甲基酮未阻止爆发,表明它接近半胱天冬酶激活,但被环己酰亚胺抑制,符合蛋白质合成的要求。这些结果与RGC轴突切开术诱导一种或多种介导氧化扩增的蛋白质的合成相一致。这可能是轴突损伤后RGC凋亡信号转导的早期事件。

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