Antiangiogenic Activity of rTRAIL is Potentiated by Sflt-1, a VEGF Trap

B. Yashaswini, A. Mutahar, B. Salimath
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引用次数: 1

Abstract

Objective: Anti-angiogenesis and pro-apoptosis are the two processes which are strategically used to target tumors. The soluble form of VEGF receptor 1 (Flt-1) is a modulator of VEGF activity and could be useful as a trap to intrinsically sequester VEGF in tumor cells. In the present study, we have investigated the role of rTRAIL in inhibiting VEGF-mediated angiogenesis and its synergistic potentiation by sFlt-1. Methods: We have expressed human recombinant TRAIL, to study its role in anti-angiogenesis and a 2-domain active variant of sFlt-1 by bacterial expression to be used as a trap for VEGF. 3[H] thymidine incorporation assay was used to confirm the inhibitory activity of sFlt-1 and/or rTRAIL on cell proliferation. The synergistic anti-migratory and anti-angiogenic activity of sFlt-1 and rTRAIL were assessed using endothelial cell wound healing and tube formation assay in-vitro and by rat corneal micropocket assay in-vivo. Results: Inhibition of cell proliferation was evident in sFlt-1 and rTRAIL treated cells in a dose -dependent manner with more than 60% reduction in proliferation rate as compared to the tumor cells treated with sFlt-1 and rTRAIL alone. Furthermore, the anti-metastatic and anti-angiogenic activity of sFlt-1 and rTRAIL in combination was evident in endothelial wound healing and tube formation with a significant reduction in the number of cells migrated into the wounded area and the number of honey comb-like structures with the length of the tubes formed to mimic blood vessel formation in-vitro respectively. The in-vivo corneal micropocket assay confirmed the anti-angiogenic effect of sFlt-1 and rTRAIL in combination. Conclusion: The synergistic role of sFlt-1 and rTRAIL as the potential inhibitors of VEGF- mediated angiogenesis could be therapeutically exploited.
VEGF诱捕剂Sflt-1可增强rTRAIL的抗血管生成活性
目的:抗血管生成和促细胞凋亡是靶向肿瘤的两个重要过程。可溶性形式的VEGF受体1(Flt-1)是VEGF活性的调节剂,并且可以用作在肿瘤细胞中固有地螯合VEGF的陷阱。在本研究中,我们研究了rTRAIL在抑制VEGF介导的血管生成中的作用及其通过sFlt-1的协同增强作用。方法:我们表达了人重组TRAIL,以研究其在抗血管生成中的作用,并通过细菌表达来研究sFlt-1的2结构域活性变体作为VEGF的陷阱。3[H]胸苷掺入试验用于证实sFlt-1和/或rTRAIL对细胞增殖的抑制活性。sFlt-1和rTRAIL的协同抗迁移和抗血管生成活性通过体外内皮细胞伤口愈合和管形成测定和体内大鼠角膜微袋测定进行评估。结果:与单独用sFlt-1和rTRAIL处理的肿瘤细胞相比,sFlt-1或rTRAIL处理的细胞以剂量依赖性方式明显抑制细胞增殖,增殖率降低60%以上。此外,sFlt-1和rTRAIL的联合抗转移和抗血管生成活性在内皮伤口愈合和管形成中是明显的,迁移到损伤区域的细胞数量和蜂窝状结构的数量随着管的长度而显著减少,以分别模拟体外血管形成。体内角膜微袋测定证实了sFlt-1和rTRAIL联合使用的抗血管生成作用。结论:sFlt-1和rTRAIL作为VEGF介导的血管生成的潜在抑制剂具有协同作用,可用于治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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