Centre for the Endothelium, Vascular Biology Program, Centenary Institute, and University of Sydney, Sydney, Australia;
Blood. 2013 Oct 17;122(16):2911-9. doi: 10.1182/blood-2012-12-473017. Epub 2013 Sep 5.
Cellular junctions are essential to the normal functioning of the endothelium and control angiogenesis, tissue leak, and inflammation. From a screen of micro RNAs (miRNAs) altered in in vitro angiogenesis, we selected a subset predicted to target junctional molecules. MiR-27a was rapidly downregulated upon stimulation of in vitro angiogenesis, and its level of expression is reduced in neovessels in vivo. The downregulation of miR-27a was essential for angiogenesis because ectopic expression of miR-27a blocked capillary tube formation and angiogenesis. MiR-27a targets the junctional, endothelial-specific cadherin, VE-cadherin. Consistent with this, vascular permeability to vascular endothelial growth factor in mice is reduced by administration of a general miR-27 inhibitor. To determine that VE-cadherin was the dominant target of miR-27a function, we used a novel technology with "Blockmirs," inhibitors that bind to the miR-27 binding site in VE-cadherin. The Blockmir CD5-2 demonstrated specificity for VE-cadherin and inhibited vascular leak in vitro and in vivo. Furthermore, CD5-2 reduced edema, increased capillary density, and potently enhanced recovery from ischemic limb injury in mice. The Blockmir technology offers a refinement in the use of miRNAs, especially for therapy. Further, targeting of endothelial junctional molecules by miRNAs has clinical potential, especially in diseases associated with vascular leak.
细胞连接对于血管内皮的正常功能至关重要,控制着血管生成、组织渗漏和炎症。我们从体外血管生成中改变的 microRNAs (miRNAs) 筛选中选择了一组预测靶向连接分子的 miRNA。miR-27a 在体外血管生成刺激下迅速下调,其表达水平在体内新生血管中降低。miR-27a 的下调对于血管生成是必需的,因为异位表达 miR-27a 阻断了毛细血管管腔形成和血管生成。miR-27a 靶向连接的、内皮特异性钙黏蛋白 VE-cadherin。与此一致的是,在小鼠中,通过给予通用 miR-27 抑制剂,血管内皮生长因子的血管通透性降低。为了确定 VE-cadherin 是 miR-27a 功能的主要靶标,我们使用了一种带有“Blockmirs”的新型技术,该技术的抑制剂与 VE-cadherin 中的 miR-27 结合位点结合。Blockmir CD5-2 对 VE-cadherin 具有特异性,并在体外和体内抑制血管渗漏。此外,CD5-2 减少了水肿,增加了毛细血管密度,并有力地增强了小鼠缺血肢体损伤的恢复。Blockmir 技术提供了 miRNA 应用的一种改进,特别是在治疗方面。此外,miRNA 靶向内皮连接分子具有临床潜力,特别是在与血管渗漏相关的疾病中。