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大鼠脉络丛和最后区中脑脊液主导环境与血液主导环境之间的功能和结构边界。

The functional and structural borders between the CSF- and blood-dominated milieus in the choroid plexuses and the area postrema of the rat.

作者信息

Krisch B

出版信息

Cell Tissue Res. 1986;245(1):101-15. doi: 10.1007/BF00218091.

Abstract

In the borderline area between the hemal milieu of the choroid plexuses (PC) and the interstitial cerebrospinal-fluid (CSF) compartment, ground substances displaying increased amounts of basal lamina-like material and containing negatively charged sulfated glycosaminoglycans appear to be endowed with selective properties. They may function as a sieve or filtration barrier gradually controlling the passage of substances between the two milieus, depending on their charge and molecular weight. Special structural features and functional properties of ependymal cells are associated with such bordering structures. These ependymal cells are transitional elements between choroid epithelium and ciliated ependymal cells. As judged from experiments with horseradish peroxidase and conventional electron microscopy, occluding junctions at the basal pole of these cells prevent a rapid alteration in the milieu conditions, enabling gradual change from hemal to CSF composition near the bases of these transitional ependymal cells. The borderline structures between the hemal milieu of the PC and the area postrema are established by leptomeningeal cells which face a hemal milieu, are endowed with conspicuous tight junctions, and produce a flocculent substance, the light-microscopic equivalent of which is PAS positive. These structures probably establish an effective barrier between the two milieus of different composition. The functional characteristics and the morphology of the meningeal cells facing the hemal milieu of neurohemal regions resemble closely the neurothelial cells, which are interposed between the CSF milieu and the hemal milieu in the dura mater. The present results suggest that the location between the hemal and the CSF milieu is decisive for the transformation of leptomeningeal cells into "neurothelial" elements.

摘要

在脉络丛(PC)的血液环境与间质脑脊液(CSF)腔室之间的边缘区域,显示出大量类基底膜物质且含有带负电荷的硫酸化糖胺聚糖的细胞外基质似乎具有选择性特性。它们可能起到筛子或过滤屏障的作用,根据物质的电荷和分子量逐渐控制两种环境之间物质的通过。室管膜细胞的特殊结构特征和功能特性与这种边界结构相关。这些室管膜细胞是脉络丛上皮和纤毛室管膜细胞之间的过渡成分。从辣根过氧化物酶实验和传统电子显微镜观察判断,这些细胞基底部的封闭连接可防止环境条件的快速改变,使这些过渡性室管膜细胞基部附近的血液成分能逐渐转变为脑脊液成分。PC的血液环境与最后区之间的边界结构是由软脑膜细胞形成的,这些细胞面对血液环境,具有明显的紧密连接,并产生一种絮状物质,其在光学显微镜下的对应物呈PAS阳性。这些结构可能在两种不同成分的环境之间建立了有效的屏障。面对神经血液区域血液环境的脑膜细胞的功能特征和形态与神经上皮细胞非常相似,神经上皮细胞介于硬脑膜中的脑脊液环境和血液环境之间。目前的结果表明,血液环境和脑脊液环境之间的位置对于软脑膜细胞转变为“神经上皮”成分起决定性作用。

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