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Angiogenic interaction between retinal endothelial cells and pericytes from normal and diabetic rabbits, and phenotypic changes of diabetic cells.

机译:正常和糖尿病兔的视网膜内皮细胞与周细胞之间的血管生成相互作用,以及糖尿病细胞的表型变化。

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Retinal endothelial cells (ECs) and pericytes (PCs) were cloned and cultured from normal and diabetic rabbits to clarify the mechanism of diabetic proliferative retinopathy from the viewpoint of the interaction between ECs and PCs, and phenotypic changes of diabetic cells. PC-conditioned medium (PC-CM) from normal rabbits stimulated in vitro angiogenesis of diabetic ECs more than that of normal ECs. in vitro angiogenesis was also more stimulated in diabetic ECs than in normal ECs by basic fibroblast growth factor (bFGF) or transforming growth factor-beta 1, indicating that diabetic ECs are different from normal ECs in terms of angiogenic potential. One mechanism of this property of diabetic ECs was the acceleration of cell proliferation but not of cell migration, because diabetic ECs grew more rapidly but did not migrate more than normal ECs in response to PC-CM or bFGF. Moreover, PC-CM from diabetic PCs stimulated angiogenesis of normal ECs more than that from normal PCs, indicating that diabetic PCs secreted more angiogenic factor(s) than normal PCs. The angiogenic, mitogenic and migratory activities of PC-CM both from normal and diabetic PCs were similarly inhibited by an anti-bFGF antibody. Western blot analysis revealed this factor to be a bFGF-like molecule. These data indicate that the interaction between ECs and PCs and the phenotypic changes of diabetic ECs and PCs both contribute to the proliferative retinopathy in diabetes.
机译:从正常兔和糖尿病兔中克隆并培养了视网膜内皮细胞(ECs)和周细胞(PCs),从ECs与PCs之间的相互作用以及糖尿病细胞的表型变化的角度阐明了糖尿病性增生性视网膜病变的机制。正常兔的PC条件培养基(PC-CM)比正常EC刺激的糖尿病EC的体外血管生成更多。碱性成纤维细胞生长因子(bFGF)或转化生长因子-β1也比正常EC刺激了更多的糖尿病EC体外血管生成,表明糖尿病EC与正常EC的血管生成潜力不同。糖尿病EC的这种特性的一种机制是加速细胞增殖,而不是细胞迁移,因为糖尿病EC响应PC-CM或bFGF增长较快,但迁移不超过正常EC。而且,来自糖尿病PC的PC-CM比正常PC对正常EC的血管生成的刺激更大,这表明糖尿病PC比正常PC分泌更多的血管生成因子。正常和糖尿病PC的PC-CM的血管生成,促有丝分裂和迁移活性均受到抗bFGF抗体的类似抑制。蛋白质印迹分析显示该因子是bFGF样分子。这些数据表明,ECs和PCs之间的相互作用以及糖尿病性ECs和PCs的表型改变均促成糖尿病性视网膜增生病。

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