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对发育中大鼠脑毛细血管超微结构的一些观察

Some observations on the ultrastructure of developing rat cerebral capillaries.

作者信息

Dyson S E, Jones D G, Kendrick W L

出版信息

Cell Tissue Res. 1976 Oct 19;173(4):529-42. doi: 10.1007/BF00224312.

Abstract

Developing blood vessels in rat cerebral cortex were studied at a number of stages between 3 and 28 days postnatal, in an attempt to obtain data on the mechanisms by which the lumen is established within cords of mesodermal cells. A combination of techniques was utilized in an attempt to elucidate these mechanisms. These were: (a) aldehyde fixation and block staining with phosphotungstic acid; (b) aldehyde perfusion followed by perfusion of a lead solution and post-fixation in osmium tetroxide; (c) conventional preparation of tissue with aldehyde and osmium fixation. Support for interendothelial lumen formation was readily forthcoming, including vessels with junctions between two or more endothelial cells cut transversely. There was some support for intraendothelial lumen formation, in the form of "seamless" endothelial cells. Other features noted included the presence of free ribosomes and vacuoles in the endothelial cells, endothelial flaps, sprouts and tendrils, intraluminal debris, endothelial degeneration and a junction with a nonendothelial cell. Large numbers of endothelial vacuoles were noted, many of them occurring at the abluminal edge of the cells. These vacuoles may be involved in the formation of intraendothelial lumina and also in the enlargement of both types of lumina. This study provides evidence that besides the well-established interendothelial lumen formation, intraendothelial mechanisms may also be operative in rat cerebral cortex. The techniques employed in this study offer the potential for clarifying these and related issues.

摘要

研究了出生后3至28天多个阶段大鼠大脑皮质中血管的发育情况,旨在获取有关中胚层细胞索内管腔形成机制的数据。为阐明这些机制,采用了多种技术组合。这些技术包括:(a) 醛固定并用磷钨酸进行块状染色;(b) 醛灌注,随后灌注铅溶液并在四氧化锇中后固定;(c) 用醛和锇固定进行组织常规制备。很容易获得支持内皮间管腔形成的证据,包括有两个或更多内皮细胞横向切断连接处的血管。对于内皮内管腔形成也有一些支持,表现为“无缝”内皮细胞。其他观察到的特征包括内皮细胞中存在游离核糖体和液泡、内皮瓣、芽和卷须、管腔内碎片、内皮变性以及与非内皮细胞的连接。观察到大量内皮液泡,其中许多出现在细胞的无腔边缘。这些液泡可能参与内皮内管腔的形成,也参与两种类型管腔的扩大。本研究提供了证据,表明除了已确定的内皮间管腔形成外,内皮内机制在大鼠大脑皮质中也可能起作用。本研究采用的技术为阐明这些及相关问题提供了可能性。

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