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大鼠纹状体小白蛋白中间神经元皮质和丘脑谷氨酸能突触输入的形态学研究

Morphological Study of the Cortical and Thalamic Glutamatergic Synaptic Inputs of Striatal Parvalbumin Interneurons in Rats.

作者信息

Zheng Xuefeng, Sun Liping, Liu Bingbing, Huang Ziyun, Zhu Yaofeng, Chen Tao, Jia Linju, Li Yanmei, Lei Wanlong

机构信息

Department of Anatomy, Zhongshan School of Medicine, Sun Yat-Sen University, Guangzhou, China.

Department of Anatomy, Neuroscience Laboratory for Cognitive and Developmental Disorders, Medical College of Jinan University, Guangzhou, China.

出版信息

Neurochem Res. 2021 Jul;46(7):1659-1673. doi: 10.1007/s11064-021-03302-4. Epub 2021 Mar 26.

Abstract

Parvalbumin-immunoreactive (Parv+) interneurons is an important component of striatal GABAergic microcircuits, which receive excitatory inputs from the cortex and thalamus, and then target striatal projection neurons. The present study aimed to examine ultrastructural synaptic connection features of Parv+ neruons with cortical and thalamic input, and striatal projection neurons by using immuno-electron microscopy (immuno-EM) and immunofluorescence techniques. Our results showed that both Parv+ somas and dendrites received numerous asymmetric synaptic inputs, and Parv+ terminals formed symmetric synapses with Parv- somas, dendrites and spine bases. Most interestingly, spine bases targeted by Parv+ terminals simultaneously received excitatory inputs at their heads. Electrical stimulation of the motor cortex (M1) induced higher proportion of striatal Parv+ neurons express c-Jun than stimulation of the parafascicular nucleus (PFN), and indicated that cortical- and thalamic-inputs differentially modulate Parv+ neurons. Consistent with that, both Parv + soma and dendrites received more VGlut1+ than VGlut2+ terminals. However, the proportion of VGlut1+ terminal targeting onto Parv+ proximal and distal dendrites was not different, but VGlut2+ terminals tended to target Parv+ somas and proximal dendrites than distal dendrites. These functional and morphological results suggested excitatory cortical and thalamic glutamatergic inputs differently modulate Parv+ interneurons, which provided inhibition inputs onto striatal projection neurons. To maintain the balance between the cortex and thalamus onto Parv+ interneurons may be an important therapeutic target for neurological disorders.

摘要

小白蛋白免疫反应阳性(Parv+)中间神经元是纹状体GABA能微环路的重要组成部分,其接收来自皮层和丘脑的兴奋性输入,然后靶向纹状体投射神经元。本研究旨在通过免疫电子显微镜(immuno-EM)和免疫荧光技术,研究Parv+神经元与皮层和丘脑输入以及纹状体投射神经元之间的超微结构突触连接特征。我们的结果表明,Parv+胞体和树突均接收大量不对称突触输入,Parv+终末与Parv-胞体、树突和棘基部形成对称突触。最有趣的是,被Parv+终末靶向的棘基部在其头部同时接收兴奋性输入。电刺激运动皮层(M1)比刺激束旁核(PFN)诱导更高比例的纹状体Parv+神经元表达c-Jun,这表明皮层和丘脑输入对Parv+神经元的调节存在差异。与此一致的是,Parv+胞体和树突接收的VGlut1+终末比VGlut2+终末更多。然而,VGlut1+终末靶向Parv+近端和远端树突的比例没有差异,但VGlut2+终末倾向于靶向Parv+胞体和近端树突而非远端树突。这些功能和形态学结果表明,兴奋性皮层和丘脑谷氨酸能输入对Parv+中间神经元的调节方式不同,Parv+中间神经元为纹状体投射神经元提供抑制性输入。维持皮层和丘脑对Parv+中间神经元调节的平衡可能是神经疾病的一个重要治疗靶点。

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