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在大鼠梨状皮层中,不同的中间神经元群体具有高度特异性的相互连接。

Diverse interneuron populations have highly specific interconnectivity in the rat piriform cortex.

机构信息

Molecular Brain Research Group, Department of Physiology and Pharmacology, Robarts Research Institute, University of Western Ontario, London, Ontario, Canada.

出版信息

J Comp Neurol. 2010 May 1;518(9):1570-88. doi: 10.1002/cne.22291.

Abstract

Previous studies have suggested that the patterns of innervation and high interconnectivity of the piriform cortex (PC) provide for strong olfactory hippocampal memory; however, these same attributes may create high seizurogenic tendencies. Thus, understanding this wiring is important from a physiological and pathophysiological perspective. Distinct interneurons expressing differing calcium binding proteins (CBPs), parvalbumin (PV), calbindin (CB), and calretinin (CR), have been shown to exist in PC. However, a comprehensive examination of the distribution and innervation patterns of these neurons has not been done. Thus the purpose of this study was to combine the analysis of the CBP cell localization with analysis of their innervation patterns. Each type was differentially localized in the three layers of the PC. Only CR-positive neurons were found in layer 1. PV and CB are coexpressed in layers 2-3, most expressing both PV and CB. A morphological estimate of the dendritic extent for each subtype showed that PV and PV/CB cells demonstrated equally wide, horizontal and vertical arborizations, whereas CB cells had wide horizontal and restricted vertical arborizations. CR cells had restricted horizontal and very long vertical arborizations. Postsynaptic morphological targeting was also found to be specific, namely, PV(+) and PV/CB(+) nerve terminals (NTs) innervate perisomatic regions of principal cells. CR(+) NTs innervate only dendrites of principal cells, and CB(+) NTs innervate both somata and dendrites of principal cells. These data show highly complex innervation patterns for all of the CBP interneurons of the PC and form a basis for further studies in the plasticity of this region.

摘要

先前的研究表明,梨状皮层(PC)的神经支配模式和高度互联为强大的嗅觉海马记忆提供了条件;然而,这些相同的属性可能会产生高致痫倾向。因此,从生理和病理生理的角度理解这种布线是很重要的。已显示在 PC 中存在表达不同钙结合蛋白(CBPs)的不同中间神经元,即副甲状腺球蛋白(PV)、钙结合蛋白(CB)和钙反应蛋白(CR)。然而,尚未对这些神经元的分布和神经支配模式进行全面检查。因此,本研究的目的是将 CBP 细胞定位分析与它们的神经支配模式分析相结合。每种类型在 PC 的三个层中都有不同的定位。只有 CR 阳性神经元存在于第 1 层。PV 和 CB 在 2-3 层中共同表达,大多数同时表达 PV 和 CB。对每个亚型的树突扩展进行形态估计表明,PV 和 PV/CB 细胞表现出同样广泛的水平和垂直分支,而 CB 细胞具有广泛的水平分支和受限的垂直分支。CR 细胞具有受限的水平分支和非常长的垂直分支。还发现突触后形态靶向是特定的,即 PV(+)和 PV/CB(+)神经末梢(NTs)支配主细胞的体周区域。CR(+)NTs 仅支配主细胞的树突,而 CB(+)NTs 支配主细胞的体和树突。这些数据显示了 PC 中所有 CBP 中间神经元的高度复杂的神经支配模式,并为该区域的进一步研究提供了基础。

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