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脑积水对发育中大脑的影响。脑积水大鼠室管膜和室管膜下组织的组织学及定量研究。

The effects of hydrocephalus upon the developing brain. Histological and quantitative studies of the ependyma and subependyma in hydrocephalic rats.

作者信息

Weller R O, Mitchell J, Griffin R L, Gardner M J

出版信息

J Neurol Sci. 1978 May;36(3):383-402. doi: 10.1016/0022-510x(78)90046-1.

Abstract

A suspension of kaolin was injected into the cisterna magna of 44 rats at 2 weeks of age. Animals killed at intervals from 5--19 weeks of age showed varying degrees of hydrocephalus. Light microscopy, scanning and transmission electron microscopy revealed stretching and flattening of the ependymal cells but no significant loss of cilia. Histological evidence of periventricular tissue damage in these chronically hydrocephalic animals was only present when the ventricular dilatation was extensive. A quantitative assessment was made of the ependymal and subependymal cell reactions around the lateral ventricles of the hydrocephalic animals. Although the ependymal cells were clearly stretched around the ventricles, there was no apparent proliferation of these cells. An increase in the total number of subependymal cells was observed in hydrocephalic animals when compared with a series of 39 aged-matched controls. The greatest proliferation was in the dorsal and lateral walls of the ventricles which were the regions most severely stretched by the ventricular dilatation. There is evidence that subependymal cells differentiate into astrocytes and microglia so that proliferation of these cells may be interpreted as a response to continuing and progressive brain damage in chronic hydrocephalus. Such progressive tissue damage could adversely affect the developing brain.

摘要

在44只2周龄大鼠的小脑延髓池注射高岭土悬液。在5至19周龄期间间隔处死的动物显示出不同程度的脑积水。光镜、扫描电镜和透射电镜检查发现室管膜细胞伸展和扁平,但纤毛无明显缺失。这些慢性脑积水动物脑室周围组织损伤的组织学证据仅在脑室扩张广泛时出现。对脑积水动物侧脑室周围的室管膜和室管膜下细胞反应进行了定量评估。虽然脑室周围的室管膜细胞明显伸展,但这些细胞没有明显增殖。与39只年龄匹配的对照动物相比,脑积水动物的室管膜下细胞总数增加。最大程度的增殖发生在脑室的背壁和侧壁,这些区域因脑室扩张而受到最严重的牵拉。有证据表明室管膜下细胞可分化为星形胶质细胞和小胶质细胞,因此这些细胞的增殖可被解释为对慢性脑积水持续和进行性脑损伤的一种反应。这种进行性组织损伤可能对发育中的脑产生不利影响。

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