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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Caspase dependence of the death of neonatal retinal ganglion cells induced by axon damage and induction of autophagy as a survival mechanism
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Caspase dependence of the death of neonatal retinal ganglion cells induced by axon damage and induction of autophagy as a survival mechanism

机译:Caspase依赖轴突损伤和自噬诱导的新生视网膜神经节细胞死亡作为生存机制

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We examined the degeneration of post-mitotic ganglion cells in ex-vivo neonatal retinal explants following axon damage. Ultrastructural features of both apoptosis and autophagy were detected. Degenerating cells reacted with antibodies specific for activated caspase-3 or -9, consistent with the presence of caspase activity. Furthermore, peptidic inhibitors of caspase-9, -6 or -3 prevented cell death (100 μM Ac-LEDH-CHO, 50 μM Ac-VEID-CHO and 10 μM Z-DEVD-fmk, respectively). Interestingly, inhibition of autophagy by 7-10 mM 3-methyl-adenine increased the rate of cell death. Immunohistochemistry data, caspase activation and caspase inhibition data suggest that axotomy of neonatal retinal ganglion cells triggers the intrinsic apoptotic pathway, which, in turn, is counteracted by a pro-survival autophagic response, demonstrated by electron microscopy profiles and pharmacological autophagy inhibitor.
机译:我们检查了轴突损伤后离体新生儿视网膜外植体中有丝分裂后神经节细胞的变性。检测到凋亡和自噬的超微结构特征。退化细胞与对激活的caspase-3或-9特异的抗体反应,与caspase活性的存在相一致。此外,胱天蛋白酶9,-6或-3的肽类抑制剂可防止细胞死亡(分别为100μMAc-LEDH-CHO,50μMAc-VEID-CHO和10μMZ-DEVD-fmk)。有趣的是,7-10 mM 3-甲基腺嘌呤抑制自噬可增加细胞死亡率。免疫组织化学数据,半胱天冬酶激活和半胱天冬酶抑制数据表明,新生儿视网膜神经节细胞的轴突切开会触发固有的凋亡途径,而这一过程又被生存前的自噬反应所抵消,这由电子显微镜检查和药理自噬抑制剂证实。

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