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大鼠小脑系统发生小叶中浦肯野细胞树突棘与平行纤维膨体之间的突触密度差异

Differential synapse density between Purkinje cell dendritic spine and parallel fiber varicosity in the rat cerebellum among the phylogenic lobules.

作者信息

Kim Hyun-Wook, Oh Seung Hak, Lee Se Jeong, Na Ji Eun, Rhyu Im Joo

机构信息

Department of Anatomy, Korea University College of Medicine, Seoul, 02841, Korea.

Division of Brain Korea 21 Plus Program for Biomedical Science, Korea University College of Medicine, Seoul, 02841, Korea.

出版信息

Appl Microsc. 2020 Feb 27;50(1):6. doi: 10.1186/s42649-020-00027-6.

Abstract

The cerebellum is a region of the brain that plays an important role in motor control. It is classified phylogenetically into archicerebellum, paleocerebellum and neocerebellum. The Purkinje cells are lined in a row called Purkinje cell layer and it has a unique dendritic branches with many spines.The previous study reported that there is a difference of synapse density according to the lobules based on large two-dimensional data. However, recent study with high voltage electron microscopy showed there was no differences in dendritic spine density of the Purkinje cell according to its phylogenetic lobule. We analyzed Purkinje cell density in the II, VI and X lobules by stereological modules and synaptic density was estimated by double disector based on Purkinje cell density in the molecular layer of each lobule.The results showed that there was significant difference in the Purkinje cell density and synapse number according to their phylogenetic lobules. The number of Purkinje cell in a given volume was larger in the archicerebellum, but synapse density was higher in the neocerebellum.These data suggest that cellular and synaptic organization of the Purkinje cell is different according to their phylogenetic background.

摘要

小脑是大脑的一个区域,在运动控制中发挥着重要作用。从系统发育角度来看,它可分为原小脑、旧小脑和新小脑。浦肯野细胞排列成一排,称为浦肯野细胞层,其具有独特的带有许多棘的树突分支。先前的研究基于大量二维数据报道,根据小叶不同,突触密度存在差异。然而,最近利用高压电子显微镜进行的研究表明,浦肯野细胞的树突棘密度根据其系统发育小叶并无差异。我们通过体视学模块分析了II、VI和X小叶中的浦肯野细胞密度,并基于每个小叶分子层中的浦肯野细胞密度,通过双标立体显微镜估计突触密度。结果表明,根据其系统发育小叶,浦肯野细胞密度和突触数量存在显著差异。在给定体积中,原小脑中的浦肯野细胞数量较多,但新小脑中的突触密度较高。这些数据表明,浦肯野细胞的细胞和突触组织根据其系统发育背景而有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/985a/7818350/d243b3dc575e/42649_2020_27_Fig1_HTML.jpg

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