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大鼠前额叶皮质中的胼胝体终末:突触靶点及与γ-氨基丁酸免疫反应性结构的关联

Callosal terminals in the rat prefrontal cortex: synaptic targets and association with GABA-immunoreactive structures.

作者信息

Carr D B, Sesack S R

机构信息

Department of Neuroscience, University of Pittsburgh, Pennsylvania 15260, USA.

出版信息

Synapse. 1998 Jul;29(3):193-205. doi: 10.1002/(SICI)1098-2396(199807)29:3<193::AID-SYN1>3.0.CO;2-1.

Abstract

The callosal projections of the cerebral cortex play an important role in the functional integration of the two hemispheres, and the anatomy of these connections has been extensively studied in primary sensory and motor regions. In the present investigation, we examined the synaptic targets of callosal terminals in a limbic association area, the prefrontal cortex (PFC) in the rat. In addition, we examined the relationship of callosal afferents to GABA local circuit neurons within the PFC. Callosal terminals were labeled by either anterograde transport of Phaseolus vulgaris leucoagglutinin from superficial or deep layers or by anterograde degeneration following electrolytic lesion of the contralateral PFC. Callosal terminals in either the superficial or deep layers labeled by either method formed primarily asymmetric axo-spinous synapses (approximately 95%), while the remainder formed axo-dendritic synapses. Some of the dendrites postsynaptic to callosal terminals exhibited a morphology characteristic of local circuit neurons. This observation was confirmed in tissue immunolabeled for GABA, in which degenerating callosal terminals sometimes formed asymmetric synapses on GABA-labeled dendrites. In addition, GABA-labeled terminals and callosal afferents were sometimes observed to converge onto common postsynaptic dendritic shafts or spines within the PFC. These results indicate that callosal terminals in limbic association cortex, consistent with sensory and motor cortices, primarily target the spines of pyramidal neurons. In addition, the results suggest that callosal afferents to the PFC interact with GABA local circuit neurons at multiple levels. Specifically, a proportion of callosal terminals appear to provide excitatory drive to GABA cells, while GABA terminals may modulate the excitation from callosal inputs to the distal dendrites and spines of PFC pyramidal neurons.

摘要

大脑皮质的胼胝体投射在两个半球的功能整合中发挥着重要作用,并且这些连接的解剖结构已在初级感觉和运动区域得到广泛研究。在本研究中,我们检查了大鼠边缘联合区前额叶皮质(PFC)中胼胝体终末的突触靶点。此外,我们研究了胼胝体传入纤维与PFC内GABA局部回路神经元的关系。通过从浅层或深层进行菜豆白细胞凝集素的顺行运输或通过对侧PFC电解损伤后的顺行变性来标记胼胝体终末。通过任何一种方法标记的浅层或深层中的胼胝体终末主要形成不对称的轴-棘突触(约95%),其余的形成轴-树突突触。一些作为胼胝体终末突触后成分的树突表现出局部回路神经元的形态特征。这一观察结果在GABA免疫标记的组织中得到证实,其中变性的胼胝体终末有时在GABA标记的树突上形成不对称突触。此外,有时观察到GABA标记的终末和胼胝体传入纤维汇聚到PFC内共同的突触后树突干或棘上。这些结果表明,边缘联合皮质中的胼胝体终末与感觉和运动皮质一致,主要靶向锥体细胞的棘。此外,结果表明,PFC的胼胝体传入纤维在多个水平上与GABA局部回路神经元相互作用。具体而言,一部分胼胝体终末似乎为GABA细胞提供兴奋性驱动,而GABA终末可能调节从胼胝体输入到PFC锥体细胞远端树突和棘的兴奋。

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