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[毛果芸香碱处理大鼠慢性期海马神经元突触重建]

[Neuronal synaptic reconstruction in hippocampus in chronic phase of pilocarpine-treated rats].

作者信息

Yi Fang, Abuhamed Mutasem M, Long Li-li, Li Yi, Li Shu-yu, Wu Zhi-guo, Xiao Bo

机构信息

Department of Neurology, Xiangya Hospital, Central South University, Changsha 410008, China.

出版信息

Zhonghua Yi Xue Za Zhi. 2011 May 24;91(19):1335-9.

Abstract

OBJECTIVE

To explore the aberrant formation of excitatory and inhibitory circuit rearrangements of hippocampus in temporal lobe epilepsy.

METHODS

Pilocarpine-induced animal model was established. At around Day 60 post-modeling, retrograde tracer fluorogold (FG) was injected in vivo into CA1 and CA3 areas of hippocampus by stereotaxic apparatus. Immunohistochemistry of FG was used to observe the aberrant excitatory circuit rearrangements. Double immunofluorescence with NPY (neuropeptide Y) and FG was performed to observe the aberrant inhibitory circuit rearrangements.

RESULTS

After an injection of FG into CA1 area, the FG-labeled pyramidal cells could be observed distantly from the zone of dye spread in CA1 area, CA3 area and subiculm. And the FG-labeled non-principal neurons could be seen in stratum oriens of CA1 and hilus in experimental group. Double immunofluorescence revealed that the FG-labeled NPY interneurons were located distantly from the zone of dye spread in CA1 area, CA3 area and hilus in experimental rats. When injection was administered in CA3 area, the FG-labeled pyramidal cells were visible in the whole CA3 area and hilus in both groups. Some pyramidal cells were present in CA1 in experimental group. Also some FG-labeled non-principle cells were found in hilus and distantly from the zone of dye spread in CA1 area. And the FG-labeled NPY neurons could be seen in hilus in experimental rats.

CONCLUSION

Aberrant excitatory and inhibitory synaptic reconstruction exist in hippocampus in chronic phase of temporal lobe epilepsy, including excitatory synaptic connections among pyramidal cells in CA1 area, pyramidal cells between CA1 and subiculum and pyramidal cells between CA1 and CA3, inhibitory synaptic connections among dendritic interneurons in CA1 area, CA3 to CA1, hilus to CA1 and hilus to CA3 area. These circuit arrangements may play an important role in the pathogenesis of epilepsy.

摘要

目的

探讨颞叶癫痫中海马兴奋性和抑制性回路重排的异常形成。

方法

建立匹罗卡品诱导的动物模型。在建模后约60天,通过立体定位仪将逆行示踪剂荧光金(FG)活体注射到海马的CA1和CA3区。采用FG免疫组织化学观察兴奋性回路重排异常。进行NPY(神经肽Y)与FG的双重免疫荧光以观察抑制性回路重排异常。

结果

向CA1区注射FG后,在CA1区、CA3区和下托中可在远离染料扩散区的位置观察到FG标记的锥体细胞。在实验组的CA1区的始层和海马门中可见FG标记的非主神经元。双重免疫荧光显示,在实验大鼠的CA1区、CA3区和海马门中,FG标记的NPY中间神经元位于远离染料扩散区的位置。当向CA3区注射时,两组的整个CA3区和海马门中均可见FG标记的锥体细胞。实验组的CA1区存在一些锥体细胞。此外,在海马门中发现一些FG标记的非主细胞,且远离CA1区的染料扩散区。在实验大鼠的海马门中可见FG标记的NPY神经元。

结论

颞叶癫痫慢性期海马中存在兴奋性和抑制性突触重建异常,包括CA1区锥体细胞之间、CA1与下托之间的锥体细胞以及CA1与CA3之间的锥体细胞之间的兴奋性突触连接,CA1区、CA3至CA1、海马门至CA1以及海马门至CA3区树突中间神经元之间的抑制性突触连接。这些回路排列可能在癫痫发病机制中起重要作用。

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