National Children's Research Institute, The Ohio State University, Columbus, OH 43205, USA.
Circ Res. 2010 Oct 1;107(7):860-70. doi: 10.1161/CIRCRESAHA.110.218271. Epub 2010 Aug 5.
The heterotypic interactions of endothelial cells and mural cells (smooth muscle cells or pericytes) are crucial for assembly, maturation, and subsequent function of blood vessels. Yet, the molecular mechanisms underlying their association have not been fully defined.
Our previous in vitro studies indicated that Notch3, which is expressed in mural cells, mediates these cell-cell interactions. To assess the significance of Notch3 on blood vessel formation in vivo, we investigated its role in retinal angiogenesis.
We show that Notch3-deficient mice exhibit reduced retinal vascularization, with diminished sprouting and vascular branching. Moreover, Notch3 deletion impairs mural cell investment, resulting in progressive loss of vessel coverage. In an oxygen-induced retinopathy model, we demonstrate that Notch3 is induced in hypoxia and interestingly, pathological neovascularization is decreased in retinas of Notch3-null mice. Analysis of oxygen-induced retinopathy mediators revealed that angiopoietin-2 expression is significantly reduced in the absence of Notch3. Furthermore, in vitro experiments showed that Notch3 is sufficient for angiopoietin-2 induction, and this expression is additionally enhanced in the presence of hypoxia-inducible factor 1α.
These results provide compelling evidence that Notch3 is important for the investment of mural cells and is a critical regulator of developmental and pathological blood vessel formation.
内皮细胞和壁细胞(平滑肌细胞或周细胞)的异型相互作用对于血管的组装、成熟和随后的功能至关重要。然而,其关联的分子机制尚未完全定义。
我们之前的体外研究表明,壁细胞中表达的 Notch3 介导这些细胞-细胞相互作用。为了评估 Notch3 在体内血管生成中的意义,我们研究了它在视网膜血管生成中的作用。
我们表明 Notch3 缺陷小鼠表现出视网膜血管化减少,发芽和血管分支减少。此外,Notch3 缺失会损害壁细胞的投资,导致血管覆盖的逐渐丧失。在氧诱导的视网膜病变模型中,我们证明 Notch3 在缺氧时被诱导,并且有趣的是,Notch3 缺失小鼠的病理性新生血管形成减少。对氧诱导的视网膜病变介质的分析表明,Notch3 缺失时血管生成素-2 的表达显著降低。此外,体外实验表明 Notch3 足以诱导血管生成素-2 的表达,并且在存在缺氧诱导因子 1α 的情况下,这种表达进一步增强。
这些结果提供了令人信服的证据,表明 Notch3 对于壁细胞的投资是重要的,并且是发育和病理性血管形成的关键调节剂。