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胚胎血管发生和血管生成过程中血管细胞外基质的变化。

Changes in the vascular extracellular matrix during embryonic vasculogenesis and angiogenesis.

作者信息

Risau W, Lemmon V

机构信息

Max-Planck-Institut für Entwicklungsbiologie, Tübingen, Federal Republic of Germany.

出版信息

Dev Biol. 1988 Feb;125(2):441-50. doi: 10.1016/0012-1606(88)90225-4.

DOI:10.1016/0012-1606(88)90225-4
PMID:3338622
Abstract

We have previously characterized monoclonal antibodies against chick brain cells. One of them (14-2B2) brightly stained all capillaries in frozen sections of chick brain. Here we show that this antibody is directed against chick fibronectin. Using this antibody and polyclonal antibodies against laminin, we have studied the development of the vascular extracellular matrix. Vasculogenesis, the development of capillaries from in situ differentiating endothelial cells, was studied in yolk sac blood islands and intraembryonic dorsal aorta. Blood islands produced high levels of fibronectin but not laminin. Early intraembryonic capillaries all expressed fibronectin but little if any laminin. The dorsal aorta of a 6-day-old chick embryo has several layers of fibronectin-producing cells, but is devoid of laminin. Laminin expression commenced at Day 8 and by Day 10 an adult-like distribution was found in the aortic vascular wall. Angiogenesis, the formation of capillaries from preexisting vessels, was studied during brain development. Capillary sprouts invading the neuroectoderm at Embryonic Day 4 migrated in a fibronectin-rich matrix devoid of laminin. Ultrastructural immunolocalization demonstrated the presence of fibronectin exclusively on the abluminal site of the endothelial cells. Beginning on Day 6, laminin codistributed with fibronectin in brain capillaries. We conclude that immature capillaries migrate and proliferate in a fibronectin-rich extracellular matrix, which is subsequently remodeled acquiring basement membrane-like characteristics. We suggest that laminin expression is an early indication of vascular maturation.

摘要

我们之前已对针对鸡脑细胞的单克隆抗体进行了特性鉴定。其中一种抗体(14 - 2B2)能使鸡脑冰冻切片中的所有毛细血管发出明亮荧光。在此我们表明,该抗体针对的是鸡纤连蛋白。利用此抗体以及针对层粘连蛋白的多克隆抗体,我们研究了血管细胞外基质的发育过程。血管发生,即原位分化的内皮细胞形成毛细血管的过程,在卵黄囊血岛和胚胎内背主动脉中进行了研究。血岛产生高水平的纤连蛋白,但不产生层粘连蛋白。胚胎早期的毛细血管均表达纤连蛋白,但几乎不表达层粘连蛋白。6日龄鸡胚的背主动脉有几层产生纤连蛋白的细胞,但没有层粘连蛋白。层粘连蛋白的表达在第8天开始,到第10天,在主动脉血管壁中发现了类似成体的分布。血管生成,即由已有血管形成毛细血管的过程,在脑发育过程中进行了研究。在胚胎第4天侵入神经外胚层的毛细血管芽在富含纤连蛋白但无层粘连蛋白的基质中迁移。超微结构免疫定位显示纤连蛋白仅在内皮细胞的无腔面存在。从第6天开始,层粘连蛋白与纤连蛋白在脑毛细血管中共分布。我们得出结论,未成熟的毛细血管在富含纤连蛋白的细胞外基质中迁移和增殖,随后该基质进行重塑,获得类似基底膜的特性。我们认为层粘连蛋白的表达是血管成熟的早期指标。

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