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Increased NR1-NR2A/B coassembly as a mechanism for rat chronic hippocampal epilepsy.

机译:增加的NR1-NR2A / B共装配作为大鼠慢性海马癫痫的机制。

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摘要

The N-methyl-D-aspartate receptors (NMDAR) produce physiologically functional channels for enhanced excitatory neurotransmission when they exist as heteromeric complexes containing the NMDAR1 subunit combined with NMDAR2. We examined the expressions of NMDAR1 and 2A/B protein in the kainic acid induced rat chronic epileptic hippocampus. Immunoreactivities of both NMDAR1 and NDMAR2A/B were increased in the inner molecular layer of the dentate gyrus, while they were decreased in the hilar and CA3/4 pyramidal zones. Immunoblot analysis demonstrated that the overall level of NMDAR1-2A/B coassembly was increased in the whole hippocampus. These results indicate that the increase of the NMDAR1-2A/B complex in the inner molecular layer is a significant cellular mechanism that contributes to focal hyperexcitability in rat chronic hippocampal epilepsy.
机译:N-甲基-D-天冬氨酸受体(NMDAR)当以包含NMDAR1亚基和NMDAR2的异源复合物形式存在时,会产生增强兴奋性神经传递的生理功能通道。我们检查了海藻酸诱导的大鼠慢性癫痫海马体中NMDAR1和2A / B蛋白的表达。在齿状回的内分子层中,NMDAR1和NDMAR2A / B的免疫反应性均增加,而在肺门和CA3 / 4锥体区则降低。免疫印迹分析表明,整个海马体中NMDAR1-2A / B共装配的总体水平有所提高。这些结果表明,内分子层中NMDAR1-2A / B复合物的增加是一种重要的细胞机制,有助于大鼠慢性海马癫痫病灶过度兴奋。

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