内皮-纤溶系统相互作用。

K Sueishi, C Yasunaga, Y Nakashima, H Tsutsui, Y Ishii
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引用次数: 0

摘要

采用I型胶原凝胶培养牛内皮细胞(BCE),研究了尿激酶型纤溶酶原激活剂(u-PA)在毛细血管生长中的作用,并用形态计量学分析了其体外血管生成的定量评价。BCE迁移到凝胶基质中并形成毛细管状网络。通过测量管形成的长度进行形态计量学分析,使我们能够评估纤溶蛋白酶和几种试剂的作用。在凝胶中添加高达25微克/毫升的纤溶酶原,以剂量依赖性的方式显著增加了BCE的管状形成程度。碱性成纤维细胞生长因子(10 ng/ml)仅在纤溶酶原存在的情况下增加管的形成。这些对血管生成的增强作用似乎与BCE衍生的u-PA激活纤维蛋白溶解有关,因为它们被抗u-PA IgG和抗纤溶酶试剂(如抑蛋白蛋白和α 2抗纤溶酶)的添加所抑制。转化生长因子β也促进BCE成管,而肿瘤坏死因子α和白细胞介素-1抑制BCE成管。血管生成的定量分析可能有助于阐明病理条件下新生血管形成的机制。
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Endothelium-fibrinolysis system interaction.

The role of urokinase-type plasminogen activator (u-PA) in capillary growth was investigated using cultured bovine endothelial cells (BCE) on type I collagen gels and analyzed by morphometry for quantitative assessment of angiogenesis in vitro. BCE migrated into the gel matrix and formed capillary-like networks. The morphometrical analyses by measuring the length of tube formation enabled us to evaluate the effects of fibrinolytic proteases and several reagents. The addition of plasminogen up to 25 micrograms/ml to the gels significantly increased the extent of tube formation of BCE in a dose-dependent manner. Basic fibroblast growth factor (10 ng/ml) increased tube formation only in the presence of plasminogen. These enhancing effects on angiogenesis appeared to be related to the activation of fibrinolysis by u-PA derived from BCE, because they were suppressed by the addition of anti-u-PA IgG and anti-plasmin reagents such as aprotinin and alpha 2 anti-plasmin. Transforming growth factor beta also enhanced tube formation of BCE, but tumor necrosis factor alpha and interleukin-1 suppressed the tube formation. The quantitative assay of angiogenesis may be useful for clarifying the mechanism of neovascularization under pathological conditions.

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