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首页> 外文期刊>Brain research >Changes of localization of highly polysialylated neural cell adhesion molecule (PSA-NCAM) in rat hippocampus with exposure to repeated kindled seizures.
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Changes of localization of highly polysialylated neural cell adhesion molecule (PSA-NCAM) in rat hippocampus with exposure to repeated kindled seizures.

机译:暴露于反复点燃的癫痫发作中大鼠海马中高度多唾液酸化神经细胞粘附分子(PSA-NCAM)的定位变化。

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摘要

Highly polysialylated neural cell adhesion molecules (PSA-NCAMs) are involved in migration of neural stem cells as well as neural plasticity. Immunoreactive PSA-NCAM expression was examined in rat with repeated exposure to amygdaloid kindled generalized seizures (GS). The number of PSA-NCAM positive cells in bilateral dentate gyrus (DG) increased significantly at GS. Although total positive cell number was not significantly different between 3 times GS (3 GS) and 30 times GS (30 GS) groups, a greater number of positive cells was located in the outer granule cell layer (GCL), and the immunopositive dendrite greatly extended to the molecular layer in the 30 GS group. These observations indicate that increased migration of newly generated cells as well as plastic change of originally-existed neural cells may occur in response to the recurrent GS, which may contribute to abnormal reconstruction of synaptic network in hippocampus and epileptogenisity in kindling.
机译:高度多唾液酸化的神经细胞粘附分子(PSA-NCAM)参与神经干细胞的迁移以及神经可塑性。在反复接触杏仁扁桃体点燃的全身性癫痫发作(GS)的大鼠中检查了免疫反应性PSA-NCAM的表达。 GS时,双侧齿状回(DG)中PSA-NCAM阳性细胞的数量显着增加。尽管在3倍GS(3 GS)和30倍GS(30 GS)组之间总阳性细胞数量没有显着差异,但更多的阳性细胞位于外颗粒细胞层(GCL)中,并且免疫阳性树突明显扩展到30 GS组中的分子层。这些观察结果表明,对GS的复发可能会导致新生成的细胞迁移增加以及原始存在的神经细胞发生塑性变化,这可能有助于海马突触网络的异常重建和点燃时的癫痫发生。

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