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大鼠侧脑室脉络丛、脉络丛毛细血管和脑室室管膜发育的形态计量学研究。

A morphometric study on the development of the lateral ventricle choroid plexus, choroid plexus capillaries and ventricular ependyma in the rat.

作者信息

Keep R F, Jones H C

机构信息

Division of Biomedical Sciences, Physiology, King's College London, U.K.

出版信息

Brain Res Dev Brain Res. 1990 Oct 1;56(1):47-53. doi: 10.1016/0165-3806(90)90163-s.

Abstract

Morphometric changes in the rat lateral ventricle choroid plexus epithelium and endothelium and in the ventricular ependyma were studied between 16 days gestation and 30 days after birth, using stereological techniques. The epithelial apical surface density increased from 0.6 to 3.3 microns 2/microns 3 and the mitochondrial volume fraction from 3.2 to 7.6% during this period. The endothelial fenestrations increased from 0.05 to 0.39 micron-1. These changes may be related to postnatal increases in choroid plexus function. Morphological changes in basolateral surface density, cell height and nucleus and glycogen volume fraction have also been measured. The development of the lateral ventricle choroid plexus was qualitatively similar to the fourth ventricle plexus reported previously, but small quantitative differences occurred. The ventricular ependyma also showed a significant increase in mitochondrial volume fraction after birth, though to a lesser extent than the plexus epithelium. The total apical surface area of the choroid plexuses was estimated at 75 cm2 for 30-day-old rats. This figure, which takes into account the apical microvilli, is much greater than previous estimates and is similar to the surface area of the cerebral capillaries (155 cm2), and suggests that the choroid plexuses may play a more important role in the regulation of the brain microenvironment than previously thought.

摘要

利用体视学技术,研究了妊娠16天至出生后30天大鼠侧脑室脉络丛上皮、内皮以及脑室室管膜的形态计量学变化。在此期间,上皮顶端表面积密度从0.6增加至3.3平方微米/立方微米,线粒体体积分数从3.2%增加至7.6%。内皮窗孔从0.05增加至0.39微米-1。这些变化可能与出生后脉络丛功能的增强有关。还测量了基底外侧表面积密度、细胞高度、细胞核以及糖原体积分数的形态学变化。侧脑室脉络丛的发育在性质上与先前报道的第四脑室脉络丛相似,但存在微小的数量差异。脑室室管膜在出生后线粒体体积分数也显著增加,尽管程度小于脉络丛上皮。对于30日龄大鼠,脉络丛的顶端总面积估计为75平方厘米。这个考虑了顶端微绒毛的数值远大于先前的估计,并且与脑毛细血管的表面积(155平方厘米)相似,这表明脉络丛在脑微环境调节中可能发挥比先前认为更重要的作用。

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