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Comparative Analysis of Metastasis Variants Derived from Human Prostate Carcinoma Cells : Roles in Intravasation of VEGF-Mediated Angiogenesis and uPA-Mediated Invasion

机译:从人类前列腺癌细胞衍生的转移变异的比较分析:在血管内皮生长因子介导的血管生成和uPA介导的侵袭中的作用

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摘要

To analyze the process of tumor cell intravasation, we used the human tumor-chick embryo spontaneous metastasis model to select in vivo high (PC-hi/diss) and low (PC-lo/diss) disseminating variants from the human PC-3 prostate carcinoma cell line. These variants dramatically differed in their intravasation and dissemination capacities in both chick embryo and mouse spontaneous metastasis models. Concomitant with enhanced intravasation, PC-hi/diss exhibited increased angiogenic potential in avian and murine models. PC-hi/diss angiogenesis and intravasation were dependent on increased secretion of vascular endothelial growth factor (VEGF), since treating developing tumors with a function-blocking anti-VEGF antibody simultaneously inhibited both processes without affecting primary tumor growth. PC-hi/diss cells were also more migratory and invasive, suggestive of heightened ability to escape from primary tumors due to matrix-degrading activity. Consistent with this suggestion, PC-hi/diss cells produced more of the serine protease urokinase-type plasminogen activator (uPA) as compared with PC-lo/diss. The functional role of uPA in PC-hi/diss dissemination was confirmed by inhibition of invasion, angiogenesis, and intravasation with specific function-blocking antibodies that prevented uPA activation and blocked uPA activity. These processes were similarly sensitive to aprotinin, a potent inhibitor of serine proteases, including uPA-generated plasmin. Thus, our comparison of the PC-3 intravasation variants points to key roles for the uPA-plasmin system in PC-hi/diss intravasation, possibly via (1) promoting tumor cell matrix invasion and (2) facilitating development of VEGF-dependent angiogenic blood vessels.
机译:为了分析肿瘤细胞的浸润过程,我们使用了人类肿瘤-小鸡胚自发转移模型,从人类PC-3前列腺中选择了体内高(PC-hi / diss)和低(PC-lo / diss)传播变异体癌细胞系。这些变异在鸡胚和小鼠自发转移模型中的内插和传播能力显着不同。伴随着血管介入的增强,PC-hi / diss在禽和鼠模型中显示出增加的血管生成潜能。 PC-hi / diss血管生成和血管浸润依赖于血管内皮生长因子(VEGF)分泌的增加,因为用功能阻断性抗VEGF抗体治疗发展中的肿瘤会同时抑制这两个过程,而不影响原发性肿瘤的生长。 PC-hi / diss细胞也更具迁移性和侵袭性,表明由于基质降解活性,其逃避原发肿瘤的能力增强。与该建议一致,与PC-lo / diss相比,PC-hi / diss细胞产生更多的丝氨酸蛋白酶尿激酶型纤溶酶原激活剂(uPA)。 uPA在PC-hi / diss传播中的功能作用已通过抑制侵袭,血管生成和防止uPA活化并阻止uPA活性的特定功能阻断抗体的内渗作用得到证实。这些过程对抑肽酶同样敏感,抑肽酶是一种有效的丝氨酸蛋白酶抑制剂,包括uPA产生的纤溶酶。因此,我们对PC-3血管内变体的比较表明,uPA-纤溶酶系统在PC-hi / diss血管内的关键作用可能是通过(1)促进肿瘤细胞基质侵袭和(2)促进VEGF依赖性血管生成的发展血管。

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