Vascular Biology Lab, AU-KBC Research Centre, Anna University, MIT Campus, Chromepet, Chennai 600 044, India.
Cell Biol Int. 2013 May;37(5):495-506. doi: 10.1002/cbin.10070. Epub 2013 Mar 7.
Cadmium targets the vascular endothelium causing endothelial dysfunction and leakiness of endothelial barrier. Nitric oxide plays a major role in mediating endothelial functions including angiogenesis, migration and permeability. The present study investigates the nitric oxide effects on cadmium induced endothelial leakiness. Results of ex vivo and in vitro permeability assays showed that even a sub-lethal dose of cadmium chloride (1 µM) was sufficient to induce leakiness of endothelial cells. Cadmium drastically altered the actin polymerisation pattern and membrane tension of these cells compared to controls. Addition of nitric oxide donor Spermine NONOate (SP) significantly blunted cadmium-mediated effects and recover endothelial cells integrity. Cadmium-induced cytoskeletal rearrangements and membrane leakiness are associated with the low nitric oxide availability and high reactive oxygen species generation. In brief, we show the protective role of nitric oxide against cadmium-mediated endothelial leakiness.
镉靶向血管内皮细胞,导致内皮功能障碍和内皮屏障通透性增加。一氧化氮在介导内皮功能方面发挥着重要作用,包括血管生成、迁移和通透性。本研究探讨了一氧化氮对镉诱导的内皮通透性增加的影响。离体和体外通透性测定结果表明,即使亚致死剂量的氯化镉(1μM)也足以诱导内皮细胞通透性增加。与对照组相比,镉会使这些细胞的肌动蛋白聚合模式和膜张力发生剧烈变化。一氧化氮供体 spermine NONOate(SP)的添加可显著减弱镉介导的作用并恢复内皮细胞的完整性。镉诱导的细胞骨架重排和膜通透性增加与一氧化氮供应不足和活性氧生成增加有关。总之,我们证明了一氧化氮对镉介导的内皮通透性增加的保护作用。