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慢性癫痫模型动物海马内GABA能神经元的超微结构改变
引用本文:朱长庚 蔡秋云. 慢性癫痫模型动物海马内GABA能神经元的超微结构改变[J]. 解剖学报, 1994, 25(4): 345-348,T002,3
作者姓名:朱长庚 蔡秋云
作者单位:同济医科大学解剖学教研室脑研究室
摘    要:用马桑内酯诱发小鼠性性癫痫模型,借助免疫电镜方法对海马的GABA能神经元的超微结构进行观察,可见小鼠海马内GABA免疫反应阳性神经元弥散分布于除锥体细胞层和颗粒细胞层外的各部。慢性癫痫上鼠海马内的GABA免疫反应性神经元胞体和末梢均呈现程度不同的结构损伤,包括线粒体肿胀,细胞器崩解和神经末梢变性,GABA样轴突末梢可与免疫反应阴性的树突构成传出性轴-树突触,也可接受免疫反应阴性轴末梢的传入性轴-轴

关 键 词:癫痫 γ 氨基丁酸 海马 免疫电镜

ULTRASTRUCTURAL CHANGES OF HIPPOCAMPAL GABA-ERGIC NEURONS IN CHRONIC EPILEPTIC MODEL ANIMAL
Zhu Changgeng, CaiQiuyun, Zhu Jiaxiang, LiuQingyin, Tong Yiling,Wei Ying. ULTRASTRUCTURAL CHANGES OF HIPPOCAMPAL GABA-ERGIC NEURONS IN CHRONIC EPILEPTIC MODEL ANIMAL[J]. Acta Anatomica Sinica, 1994, 25(4): 345-348,T002,3
Authors:Zhu Changgeng   CaiQiuyun   Zhu Jiaxiang   LiuQingyin   Tong Yiling  Wei Ying
Abstract:The chronic epileptic model was induced by coriaria lactone in mice. By means of immunoelectron microscopic method,the ultrastructure of hippocampal GABA-ergic neurons was observed.The hippocampal GABA immunoreactive(IR)neurons distributed diffusely in all(except pyramidal and granular)layers,The hippocampaI GABA-IR neuronal perikarya and terminals in chronic epileptic mice showed various degrees of damages including mitochondrial swelling,breakdown of organelles and terminal degeneration,The GABA-IR axon terminals formed efferent axo-dendritic synapses with GABA-negative dendrites and received afferent axoaxonic synapses with GABA-negative axon terminals,In hippocampus of model animal,the ultrastructure of non-GABA-ergic neurons appeared to be similar to control animal,but mitochondria tended to increased and even accumulated in the nerve terminal with normal structure.In addition,GABA-IR products also distributed in astrocytes and capillary endothelia of model mice,The above mentioned results indicated that in chronic epilepsy the GABA content in hippocampus decreased,whereas the metabolism and activity of non-GABA-ergic neurons enhanced.All of these changes might be related to pathogenesis of epilepsy.
Keywords:Epilepsy  GABA  Hippocampus  Immunoelectron microscopy  Mouse
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