Dynamic alteration of dendrites and dendritic spines in the hippocampus and microglia in mouse brain tissues after kainate-induced status epilepticus

树突棘 小胶质细胞 齿状回 海马体 海马结构 癫痫持续状态 神经科学 红藻氨酸受体 下托 癫痫发生 病理 生物 CX3CR1型 癫痫 医学 免疫学 AMPA受体 炎症 谷氨酸受体 受体 趋化因子 趋化因子受体 生物化学
作者
Lingling Xie,Tianyi Li,Xiaojie Song,Hong Sun,Jie Liu,Jing Yang,Wenjie Zhao,Li Cheng,Hengsheng Chen,Benke Liu,Wei Han,Yang Chen,Li Jiang
出处
期刊:International Journal of Neuroscience [Taylor & Francis]
卷期号:131 (11): 1045-1057 被引量:14
标识
DOI:10.1080/00207454.2020.1770246
摘要

To study the alteration of microglial subtypes, the representative markers of microglia, and the morphology of dendrites and dendritic spines after acute status epilepticus (SE) and during recurrent seizures.A mouse kainate-induced SE model was used. Dendrites and dendritic spines of granule neurons in the dentate gyrus (DG) subregion and pyramidal neurons in the cornu ammonis (CA)1 and cornu ammonis (CA)3 subregions of the hippocampus were visualized by Golgi staining. Synaptic proteins were evaluated by Western blot analysis, and microglia and their markers were evaluated by flow cytometry.Extensive partial spine loss was observed in the dendrites of granule and pyramidal cells in the acute and early chronic stages of SE. In terms of spine loss, the thin and mushroom types predominated. Accompanying the spine loss in these two stages, the proportion of M1 microglia increased significantly with high CX3CR1 expression and low CD200R expression. However, at the transiting stage, the proportion of M2 microglia was increased dramatically, and high expression levels of CXCR3 on all microglia and CD68 on M1 microglia were observed. Morris water maze tests revealed significant learning and memory impairment in the chronic phase of epilepsy.Dendritic spines in the hippocampus and microglia in the central nevus system are dynamically altered in epilepsy during the establishment and maintenance of spontaneous seizures. Microglia may contribute to the spine loss and related learning and memory impairment.
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