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Inhibition of angiogenesis by blockers of volume-regulated anion channels.

机译:通过调节体积的阴离子通道的阻滞剂抑制血管生成。

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Osmotic cell swelling activates an outwardly rectifying Cl(-) current in endothelial cells that is mediated by volume-regulated anion channels (VRACs). In the past, we have shown that serum-induced proliferation of endothelial cells is arrested in the presence of compounds that potently block the endothelial VRACs. Here we report on the effects of four chemically distinct VRAC blockers [5-nitro-2-(3-phenylpropylamino)benzoic acid] (NPPB), mibefradil, tamoxifen, and clomiphene-on several models of experimental angiogenesis. Mibefradil (20 microM), NPPB (100 microM), tamoxifen (20 microM), and clomiphene (20 microM) inhibited tube formation by rat microvascular endothelial cells plated on matrigel by 42.9 +/- 8.8%, 25.3 +/- 10.4%, 32.2 +/- 4.5%, and 20 +/- 5.8%, respectively (p < 0.05). Additionally, NPPB (50-100 microM) and mibefradil (10-30 microM) significantly inhibited bFGF (10 ng/ml) + TNFalpha (2.5 ng/ml)-stimulated microvessel formation by human microvascular endothelial cells plated on fibrin by 30-70%. Furthermore, NPPB, mibefradil, and clomiphene concentration dependently inhibited spontaneous microvessel formation in the rat aorta-ring assay and vessel development in the chick chorioallantoic membrane assay. These results suggest that VRAC blockers are potent inhibitors of angiogenesis and thus might serve as therapeutic tools in tumor growth and other angiogenesis-dependent diseases.
机译:渗透细胞膨胀激活内皮细胞中的向外整流的Cl(-)电流,该电流由体积调节的阴离子通道(VRAC)介导。过去,我们已经表明,在有效阻断内皮VRAC的化合物存在下,血清诱导的内皮细胞增殖会被阻止。在这里我们报告了四种化学上独特的VRAC阻滞剂[5-硝基-2-(3-苯基丙基氨基)苯甲酸](NPPB),米贝拉地尔,他莫昔芬和克罗米芬对几种实验性血管生成模型的影响。 Mibefradil(20 microM),NPPB(100 microM),他莫昔芬(20 microM)和clomiphene(20 microM)抑制了铺在基质胶上的大鼠微血管内皮细胞的管形成42.9 +/- 8.8%,25.3 +/- 10.4%,分别为32.2 +/- 4.5%和20 +/- 5.8%(p <0.05)。另外,NPPB(50-100 microM)和mibefradil(10-30 microM)可以显着抑制bFGF(10 ng / ml)+ TNFalpha(2.5 ng / ml)刺激的人微血管内皮细胞在30-70的纤维蛋白水平上形成的微血管形成。 %。此外,在大鼠主动脉环测定和鸡绒膜尿囊膜测定中,NPPB,米贝地尔和克罗米芬的浓度依赖性地抑制了自发性微血管的形成。这些结果表明,VRAC阻滞剂是血管生成的有效抑制剂,因此可能在肿瘤生长和其他依赖血管生成的疾病中充当治疗工具。

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