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碱性成纤维细胞生长因子与正常及新生血管化兔角膜的结合。

Binding of basic fibroblast growth factor to normal and neovascularized rabbit cornea.

作者信息

Soubrane G, Jerdan J, Karpouzas I, Fayein N A, Glaser B, Coscas G, Courtois Y, Jeanny J C

机构信息

Unité de Recherches Gérontologiques, Inserm U. 118, Paris, France.

出版信息

Invest Ophthalmol Vis Sci. 1990 Feb;31(2):323-33.

PMID:1689281
Abstract

The labeling pattern of frozen sections of rabbit cornea incubated with radioiodinated basic fibroblast growth factor (bFGF) was investigated in normal corneas and prostaglandin-induced neovascularized corneas by autoradiography followed by image analysis. 125I-bFGF binds to Bowman's, Descemet's, and vascular basement membranes in a dose-dependent manner. The specificity of the binding of bFGF to basement membrane was demonstrated by the following experiments: 1) an excess of unlabeled growth factor displaced the labeling; 2) histones did not modify the labeling; and 3) 2 M NaCl washing and enzymatic treatment with heparitinase prevented binding of labeled growth factor without apparent destruction of the overall structure of the basement membrane. Our results suggest that bFGF binds to the heparan sulfate proteoglycan of basement membranes. Both normal limbal vessels and the newly formed corneal vessels exhibited the same type of labeling but with different intensities, according to the degree of maturation of the new vessels. bFGF binding also is located clearly on the endothelial cells in both types of vessels. This second binding site could correspond to the high affinity receptors on the cell surface and suggests a direct interaction of bFGF with endothelial cells during new vessel formation.

摘要

通过放射自显影术及图像分析,研究了用放射性碘化碱性成纤维细胞生长因子(bFGF)孵育的兔角膜冰冻切片在正常角膜和前列腺素诱导的新生血管化角膜中的标记模式。125I-bFGF以剂量依赖方式与Bowman膜、Descemet膜及血管基底膜结合。bFGF与基底膜结合的特异性通过以下实验得以证实:1)过量未标记生长因子可取代标记;2)组蛋白不改变标记;3)2M NaCl洗涤及用硫酸乙酰肝素酶进行酶处理可阻止标记生长因子的结合,且基底膜整体结构无明显破坏。我们的结果表明,bFGF与基底膜的硫酸乙酰肝素蛋白聚糖结合。正常角膜缘血管和新形成的角膜血管呈现相同类型的标记,但根据新血管的成熟程度,标记强度不同。bFGF结合也清晰地位于两种血管的内皮细胞上。这第二个结合位点可能对应于细胞表面的高亲和力受体,并提示在新血管形成过程中bFGF与内皮细胞存在直接相互作用。

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