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Role of Caspase-8 and Fas in Cell Death After Spinal Cord Injury

机译:Caspase-8和Fas在脊髓损伤后细胞死亡中的作用

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摘要

Spinal cord injury (SCI) causes the death of neurons and glial cells due to the initial mechanical forces (i.e., primary injury) and through a cascade of secondary molecular events (e.g., inflammation or excitotoxicity) that exacerbate cell death. The loss of neurons and glial cells that are not replaced after the injury is one of the main causes of disability after SCI. Evidence accumulated in last decades has shown that the activation of apoptotic mechanisms is one of the factors causing the death of intrinsic spinal cord (SC) cells following SCI. Although this is not as clear for brain descending neurons, some studies have also shown that apoptosis can be activated in the brain following SCI. There are two main apoptotic pathways, the extrinsic and the intrinsic pathways. Activation of caspase-8 is an important step in the initiation of the extrinsic pathway. Studies in rodents have shown that caspase-8 is activated in SC glial cells and neurons and that the Fas receptor plays a key role in its activation following a traumatic SCI. Recent work in the lamprey model of SCI has also shown the retrograde activation of caspase-8 in brain descending neurons following SCI. Here, we review our current knowledge on the role of caspase-8 and the Fas pathway in cell death following SCI. We also provide a perspective for future work on this process, like the importance of studying the possible contribution of Fas/caspase-8 signaling in the degeneration of brain neurons after SCI in mammals.
机译:脊髓损伤(SCI)会由于初始机械力(即原发性损伤)并通过一系列继发性分子事件(例如发炎或兴奋性毒性)导致神经元和神经胶质细胞死亡,从而加剧细胞死亡。损伤后无法替代的神经元和神经胶质细胞的丢失是脊髓损伤后致残的主要原因之一。最近几十年积累的证据表明,凋亡机制的激活是引起SCI后内在脊髓(SC)细胞死亡的因素之一。尽管对于大脑下降的神经元还不是很清楚,但是一些研究还表明,SCI后大脑中的细胞凋亡可以被激活。有两种主要的凋亡途径,外在途径和内在途径。 caspase-8的激活是启动外在途径的重要步骤。在啮齿动物中的研究表明,caspase-8在SC胶质细胞和神经元中被激活,而Fas受体在创伤性SCI后的激活中起关键作用。在SCI的七lamp鳗模型中的最新工作还显示了SCI后大脑下降神经元中caspase-8的逆行激活。在这里,我们回顾我们目前关于caspase-8和Fas途径在SCI后细胞死亡中的作用的知识。我们还为该过程的未来工作提供了前景,例如研究Fas / caspase-8信号在哺乳动物SCI后脑神经元变性中可能贡献的重要性。

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