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发育中脑微血管系统中凝集素结合位点的超微结构定位

Ultrastructural localization of lectin binding sites in the developing brain microvasculature.

作者信息

Nico B, Quondamatteo F, Ribatti D, Bertossi M, Russo G, Herken R, Roncali L

机构信息

Institute of Human Anatomy, Histology and Embryology, University of Bari, Italy.

出版信息

Anat Embryol (Berl). 1998 Apr;197(4):305-15. doi: 10.1007/s004290050140.

Abstract

The temporo-spatial patterning of lectin-binding sites was examined by lectin histochemistry and quantitative methods in the microvasculature of the optic tectum of 9-, 14-, 20-day-old embryos and 30-day-old chickens. Horseradish peroxidase and colloidal-gold-labelled lectins were used for detection of beta-D-galactose (RCA-I, Ricinus communis agglutinin-I) and of N-acetylglucosamine and sialic residues (WGA, Wheat germ agglutinin) at light and electron microscopical levels. At the light microscopical level, RCA-I and WGA binding sites were detectable in the early embryonic capillaries in a diffuse staining pattern; in later embryonic stages and in adult animals, RCA-I labelling became located on the abluminal surface of the vessels, while WGA staining was detected on the luminal surface. Ultrastructurally, gold labelling for RCA-I was seen intracytoplasmically in endothelial cells in 9-day-old embryos. In 14-to 20-day-old embryos and in chickens, binding sites for RCA-I were detected in endothelial tight junctions and basement membranes. In contrast, labelling of the gold-coupled WGA lectin was distributed almost exclusively on the luminal endothelial surface already in early embryos. The results indicate that the endothelial cells of the optic tectum acquire functional polarity early in their development and that glycoconjugates containing beta-D-galactose residues are involved in the biochemical composition of the tight junctions and basement membrane, which are considered to be key structures in blood-brain barrier (BBB) differentiation.

摘要

采用凝集素组织化学和定量方法,研究了9日龄、14日龄、20日龄胚胎及30日龄鸡视顶盖微血管中凝集素结合位点的时空模式。在光学显微镜和电子显微镜水平上,使用辣根过氧化物酶和胶体金标记的凝集素来检测β-D-半乳糖(蓖麻凝集素-I,RCA-I)以及N-乙酰葡糖胺和唾液酸残基(麦胚凝集素,WGA)。在光学显微镜水平上,早期胚胎毛细血管中可检测到RCA-I和WGA结合位点,呈弥漫性染色模式;在胚胎后期和成年动物中,RCA-I标记位于血管的无腔面,而WGA染色则在管腔面检测到。超微结构上,在9日龄胚胎的内皮细胞胞质内可见RCA-I的金标记。在14至20日龄胚胎和鸡中,RCA-I的结合位点在内皮紧密连接和基底膜中被检测到。相比之下,金偶联WGA凝集素的标记在早期胚胎中几乎仅分布在管腔内皮层表面。结果表明,视顶盖的内皮细胞在其发育早期就获得了功能极性,并且含有β-D-半乳糖残基的糖缀合物参与了紧密连接和基底膜的生化组成,而紧密连接和基底膜被认为是血脑屏障(BBB)分化中的关键结构。

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