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人类视网膜血管系统的发育:细胞关系与血管内皮生长因子表达

Development of the human retinal vasculature: cellular relations and VEGF expression.

作者信息

Provis J M, Leech J, Diaz C M, Penfold P L, Stone J, Keshet E

机构信息

Department of Clinical Ophthalmology, University of Sydney, N.S.W., Australia.

出版信息

Exp Eye Res. 1997 Oct;65(4):555-68. doi: 10.1006/exer.1997.0365.

Abstract

We have investigated the relationships of the cellular constituents of the retinal vasculature--astrocytes, microglia and pericytes--to the differentiating endothelium in human fetal retina. The vascular endothelium was stained using NADPH-diaphorase histochemistry in 12 human fetal retinae ranging in gestational age from 15-22 weeks. Specimens were double labeled using antibodies against glial fibrillary acid protein, alpha smooth muscle actin, or major histocompatibility complex class II antigens to label astrocytes, contractile cells and microglia, respectively. In addition, specimens of 12, 14, 16 and 20 weeks gestation were hybridized in situ for VEGF expression. In retinal wholemounts the vascularized area comprised four lobes that converged on the optic disc. The vascular network was more dense in the temporal lobes than in the nasal lobes, and different growth patterns were evident. Astrocytes were distributed in two layers--one associated with the optic axons and a deeper layer associated with the developing vessels. In retinae younger than 20 weeks, astrocytes in the deep layer were only loosely associated with the developing vessels and extended as far as 150 microns ahead of the most peripheral vessels. A closer register between retinal vessels and the distribution of astrocytes was evident in the nasal region of retinas older than 20 weeks. In situ hybridization demonstrated expression of VEGF mRNA in the vascular layer, superficial to the ganglion cell layer, at the margins of the vascularized zone. Differences were evident in the density of astrocyte coverage of developing vessels and in the extent of VEGF expression in different regions of the retina: the relationship of these differences to differentiation gradients in the neural retina is discussed. Intensely immunoreactive microglia were observed in the vascular layer, associated with the vascular endothelium as far as the most peripheral loops, but not beyond. Alpha smooth muscle actin-containing cells covered the proximal parts of large arteries, but not corresponding veins; they were absent from arterial side-arm branches, as well as the newly formed and small diameter vessels in the age range studies. The results suggest that microglia, contractile cells and astrocytes have distinct temporo-spatial relationships to the differentiating vascular endothelium in human retinas and that VEGF expression at the vascular front, presumably by astrocytes, is associated with the spread of the retinal vasculature, as described in other species.

摘要

我们研究了视网膜脉管系统的细胞成分——星形胶质细胞、小胶质细胞和周细胞——与人类胎儿视网膜中正在分化的内皮细胞之间的关系。使用NADPH-黄递酶组织化学法对12例胎龄为15至22周的人类胎儿视网膜中的血管内皮细胞进行染色。标本分别使用抗胶质纤维酸性蛋白、α平滑肌肌动蛋白或主要组织相容性复合体II类抗原的抗体进行双重标记,以分别标记星形胶质细胞、收缩细胞和小胶质细胞。此外,对妊娠12、14、16和20周的标本进行VEGF表达的原位杂交。在视网膜整装标本中,血管化区域由四个叶组成,这些叶在视盘处汇聚。血管网络在颞叶比在鼻叶更密集,并且明显存在不同的生长模式。星形胶质细胞分布在两层中——一层与视神经轴突相关,另一层更深的层与发育中的血管相关。在20周以下的视网膜中,深层的星形胶质细胞仅与发育中的血管松散相关,并延伸到最外周血管前方150微米处。在20周以上视网膜的鼻侧区域,视网膜血管与星形胶质细胞分布之间的对应关系更为明显。原位杂交显示VEGF mRNA在血管层表达,该层位于神经节细胞层表面,在血管化区域的边缘。在发育中血管的星形胶质细胞覆盖密度以及视网膜不同区域的VEGF表达程度方面存在明显差异:讨论了这些差异与神经视网膜分化梯度的关系。在血管层观察到强烈免疫反应性的小胶质细胞,它们与血管内皮细胞相关,一直到最外周的血管环,但不超过此范围。含α平滑肌肌动蛋白的细胞覆盖大动脉的近端部分,但不覆盖相应的静脉;在动脉侧支分支以及本研究年龄范围内新形成的小直径血管中没有这些细胞。结果表明,小胶质细胞、收缩细胞和星形胶质细胞与人类视网膜中正在分化的血管内皮细胞具有不同的时空关系,并且如在其他物种中所描述的那样,血管前沿的VEGF表达(可能由星形胶质细胞产生)与视网膜脉管系统的扩展有关。

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