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大鼠穹隆下器分区星形胶质细胞群体的三平面描述:延伸细胞与第三脑室远隔部位的连接。

Three-plane description of astroglial populations of OVLT subdivisions in rat: Tanycyte connections to distant parts of third ventricle.

机构信息

Department of Anatomy, Histology and Embryology, Semmelweis University, Budapest, Hungary.

出版信息

J Comp Neurol. 2019 Dec 1;527(17):2793-2812. doi: 10.1002/cne.24707. Epub 2019 May 13.

Abstract

This study demonstrates glial and gliovascular markers of organon vasculosum laminae terminalis (OVLT) in three planes. The distribution of glial markers displayed similarities to the subfornical organ. There was an inner part with vimentin- and nestin-immunopositive glia whereas GFAP and the water-channel aquaporin 4 were found at the periphery. This separation indicates different functions of the two regions. The presence of nestin may indicate stem cell-capabilities whereas aquaporin 4 has been reported to promote the osmoreceptor function. Glutamine synthetase immunoreactivity was sparse like in the area postrema and subfornical organ. The laminin and β-dystroglycan immunolabelings altered along the vessels such as in the subfornical organ indicating altering gliovascular relations. The different subdivisions of OVLT received glial processes of different origins. The posterior periventricular zone contained short vimentin-immunopositive processes from the ependyma of the adjacent surface of the third ventricle. The lateral periventricular zone received forceps-like process systems from the anterolateral part of the third ventricle. Most interestingly, the "dorsal cap" received a mixed group of long GFAP- and vimentin-immunopositive processes from a distant part of the third ventricle. The processes may have two functions: a guidance for newly produced cells like radial glia in immature brain and/or a connection between distant parts of the third ventricle and OVLT.

摘要

本研究在三个平面展示了终板器官血管周围胶质和神经胶质标志物。神经胶质标志物的分布与下丘脑血管周围器官相似。有一个内部区域具有波形蛋白和巢蛋白阳性的神经胶质,而 GFAP 和水通道 Aquaporin 4 则位于外周。这种分离表明两个区域具有不同的功能。巢蛋白的存在可能表明干细胞的能力,而 Aquaporin 4 已被报道可促进渗透压感受器的功能。谷氨酰胺合成酶免疫反应像后穹窿和下丘脑血管周围器官一样稀疏。层粘连蛋白和β-肌营养不良糖蛋白免疫标记沿着血管改变,就像在下丘脑血管周围器官一样,表明神经胶质血管关系的改变。终板器官的不同细分区域接收来自不同来源的神经胶质过程。后室周区包含来自相邻第三脑室表面的室管膜的短波形蛋白阳性过程。侧室周区接收来自第三脑室前外侧部的镊子状过程系统。最有趣的是,“背帽”接收来自第三脑室远端的混合长 GFAP 和波形蛋白阳性过程。这些过程可能具有两种功能:作为新产生的细胞的导向,如未成熟大脑中的放射状胶质,或作为第三脑室和终板器官之间的远距离部分之间的连接。

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