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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Aristolochic acid inhibits Slit2-induced migration and tube formation via inactivation of Robo1/Robo2-NCK1/NCK2 signaling pathway in human umbilical vein endothelial cells
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Aristolochic acid inhibits Slit2-induced migration and tube formation via inactivation of Robo1/Robo2-NCK1/NCK2 signaling pathway in human umbilical vein endothelial cells

机译:在人脐静脉内皮细胞中,通过灭活ROBO1 / ROBO2-NCK1 / NCK2信号通路的灭活抑制了花倍石酸抑制了SLIT2诱导的迁移和管形成

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摘要

Robo1/Robo2-NCK1/NCK2 signaling pathway controls endothelial cell sprouting and migration induced by Slit2 or VEGF, but whether it is involved in peritubular capillary (PTC) rarefaction of Aristolochic acid nephropathy (AAN) is unclear. In the present study, we evaluated whether AA exerts antiangiogenic effects by targeting this signaling pathways in HUVECs. HUVECs or lentivirus-mediated NCK1-overexpressing HUVECs were stimulated with AA (1, 2 or 3 mu g/ml) in the absence or presence of 6 nM Slit2. Our results showed that AA. (1-3 mu g/ml) dose-dependently inhibited the migration and tube formation of HUVECs. This inhibition was in parallel with down-regulated mRNA and protein expression of Slit2/Robo1/Robo2-NCK1/NCK2 signaling pathway. Importantly, overexpression of NCK1 rescued AA.-impaired angiogenesis, as evidenced by the increase of cell migration and tube formation of HUVECs in response to Slit2. The down-regulation of NCK2 and decreased activation of Rac1 was also restored by overexpression of NCK1. Taken together, our findings show that AA inhibits Slit2-induced migration and tube formation via inactivation of Robo1/Robo2-NCK1/NCK2 signaling pathway in HUVECs, and NCK1 might be a potential agent for vascular remodeling in AAN and diseases associated with impaired angiogenesis.
机译:Robo1 / Robo2-Nck1 / Nck2信号通路控制由SlIT2或VEGF引起的内皮细胞发芽和迁移,但是否参与垂直毛细管(PTC)稀疏的花草酸肾病(AAN)尚不清楚。在本研究中,我们评估AA是否通过在HUVECS中靶向该信号传导途径来施加抗血管生成效应。 Huvecs或Lentivirus介导的Nck1过表达Huvecs在不存在或存在6nm粘接的情况下用Aa(1,2或3μg/ ml)刺激。我们的结果表明AA。 (1-3μg/ ml)剂量依赖性抑制Huvecs的迁移和管形成。该抑制与下调的mRNA和SLIT2 / ROBO1 / ROBO2-NCK1 / NCK2信号传导途径的蛋白表达并行。重要的是,NCK1的过表达拯救了AA.-受损的血管生成,如响应SlIT2的Huvecs的细胞迁移和管形成的增加所证明。通过NCK1的过度表达还恢复NCK2的下调和RAC1的激活减少。我们的研究结果表明,通过HUVECS的ROBO1 / ROBO2-NCK1 / NCK2信号传导途径灭活,AA抑制SLIT2诱导的迁移和管形成,并且NCK1可能是AAN和血管生成受损相关的疾病中的血管重塑的潜在剂。

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