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首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >Expression of nestin in the hippocampal formation of rats submitted to the pilocarpine model of epilepsy.
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Expression of nestin in the hippocampal formation of rats submitted to the pilocarpine model of epilepsy.

机译:顺应毛果芸香碱癫痫模型的大鼠海马结构中巢蛋白的表达。

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摘要

Nestin is an embryonic intermediate filament component protein, transiently expressed by the immediate precursor cells of neurons and glia, during brain development. We studied the nestin distribution in the hippocampal formation of rats submitted to pilocarpine model of epilepsy. Animals were studied during the acute, silent and chronic phases. Rats from control and acute groups presented absence of nestin-immunoreactivity (IR) in the hippocampal cells. In contrast, cells from this region presented strong nestin IR during the silent phase (3 and 7 days after status epilepticus (SE) onset), disappearing 14 days after SE. Nestin IR cells were scattered expressed in all hippocampal formation during the chronic phase. Almost all nestin IR cells exhibited glial fibrillary acidic protein (GFAP), which seems to revert to a more primitive glial form, as part of an adaptive response, transiently re-expressing phenotypic features typical of earlier stages of glial development. The re-expression of this developmental protein in the damaged cerebral tissue suggests that nestin may play an important role in the reconstruction of the glial cytoskeleton and/or remodeling events occurring in the pilocarpine model of epilepsy. Understanding how astrocytes influence network function in the injured hippocampus may, therefore, provide insight into epileptogenic mechanisms.
机译:Nestin是一种胚胎中间丝成分蛋白,在大脑发育过程中由神经元和神经胶质的直接前体细胞瞬时表达。我们研究了顺毛状癫痫模型的大鼠海马结构中巢蛋白的分布。在急性,沉默和慢性期对动物进行了研究。对照组和急性组的大鼠海马细胞中都没有巢蛋白免疫反应性(IR)。相反,来自该区域的细胞在沉默期(癫痫持续状态(SE)发作后第3天和第7天)表现出强烈的巢蛋白IR,在SE后第14天消失。在慢性期,巢蛋白IR细胞散布在所有海马结构中。几乎所有的巢蛋白IR细胞都表现出神经胶质纤维酸性蛋白(GFAP),这似乎恢复为更原始的神经胶质形式,作为适应性反应的一部分,可瞬时重新表达神经胶质发育早期典型的表型特征。在受损的脑组织中这种发育蛋白的重新表达表明,巢蛋白可能在胶质细胞骨架癫痫模型中发生的神经胶质细胞骨架的重建和/或重塑事件中起重要作用。因此,了解星形胶质细胞如何影响受损海马中的网络功能可能会提供有关致癫痫机制的见解。

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