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Temporal and spatial profile of bid cleavage after experimental traumatic brain injury.

机译:实验性脑外伤后双侧卵裂的时空分布。

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摘要

Apoptosis plays an essential role in the cascade of CNS cell degeneration after traumatic brain injury. However, the underlying mechanisms are poorly understood. The authors examined the temporal profile and cell subtype distribution of the proapoptotic protein Bid from 6 hours to 7 days after cortical impact injury in the rat. Increased protein levels of tBid were seen in the cortex ipsilateral to the injury site from 6 hours to 3 days after trauma. Immunohistologic examinations revealed expression of tBid in neurons, astrocytes, and oligodendrocytes from 6 hours to 3 days after impact injury, and concurrent assessment of DNA damage using TUNEL identified tBid-immunopositive cells with apoptoticlike morphology in the traumatized cortex. Moreover, Bid cleavage and activation of caspase-8 and caspase-9 occurred at similar time points and in similar brain regions (i.e., cortical layers 2 to 5) after impact injury. In contrast, there was no evidence of caspase-8 or caspase-9 processing or Bid cleavage in the ipsilateral hippocampus, contralateral cortex, and hippocampus up to 7 days after the injury. The results provide the first evidence of Bid cleavage in the traumatized cortex after experimental traumatic brain injury in vivo, and demonstrate that tBid is expressed in neurons and glial cells. Further, findings indicate that cleavage of Bid may be associated with the activation of the initiator caspase-8 and caspase-9. Finally, these data support the hypothesis that cleavage of Bid contributes to the apoptotic degeneration of different CNS cells in the injured cortex.
机译:凋亡在脑外伤后的中枢神经系统细胞退化的级联中起重要作用。但是,基本机制了解得很少。作者检查了大鼠皮层撞击损伤后6小时至7天的时间凋亡和凋亡蛋白Bid的细胞亚型分布。从创伤后6小时到3天,在损伤部位的同侧皮质中观察到tBid的蛋白水平增加。免疫组织学检查显示,撞击损伤后6小时至3天,tBid在神经元,星形胶质细胞和少突胶质细胞中表达,并同时通过TUNEL评估DNA损伤,鉴定出在受损皮层中具有凋亡样形态的tBid免疫阳性细胞。此外,在冲击损伤后的相似的时间点和相似的大脑区域(即,皮层2至5)中,caspase-8和caspase-9的出价切割和激活发生。相比之下,在损伤后长达7天,没有证据表明同侧海马,对侧皮质和海马中存在caspase-8或caspase-9加工或Bid切割。该结果提供了在体内实验性脑损伤后创伤皮层中Bid裂解的第一个证据,并证明tBid在神经元和神经胶质细胞中表达。此外,发现表明Bid的切割可能与启动子caspase-8和caspase-9的活化有关。最后,这些数据支持以下假设:Bid的切割有助于受损皮层中不同CNS细胞的凋亡性变性。

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