伊诺斯
血管生成
血管通透性
血管内皮生长因子
一氧化氮合酶
一氧化氮
内分泌学
一氧化氮合酶Ⅲ型
内科学
内皮一氧化氮合酶
血管
血管内皮生长因子A
生物
化学
医学
血管内皮生长因子受体
作者
Dai Fukumura,Takeshi Gohongi,Ananth Kadambi,Yotaro Izumi,Jennifer Mei Sze Ang,Chae‐Ok Yun,Donald G. Buerk,Paul L. Huang,Rakesh K. Jain
标识
DOI:10.1073/pnas.041359198
摘要
Nitric oxide (NO) plays a critical role in vascular endothelial growth factor (VEGF)-induced angiogenesis and vascular hyperpermeability. However, the relative contribution of different NO synthase (NOS) isoforms to these processes is not known. Here, we evaluated the relative contributions of endothelial and inducible NOS (eNOS and iNOS, respectively) to angiogenesis and permeability of VEGF-induced angiogenic vessels. The contribution of eNOS was assessed by using an eNOS- deficient mouse, and iNOS contribution was assessed by using a selective inhibitor [ l - N 6 -(1-iminoethyl) lysine, l -NIL] and an iNOS- deficient mouse. Angiogenesis was induced by VEGF in type I collagen gels placed in the mouse cranial window. Angiogenesis, vessel diameter, blood flow rate, and vascular permeability were proportional to NO levels measured with microelectrodes: Wild-type (WT) ≥ WT with l -NIL or iNOS −/− > eNOS −/− ≥ eNOS −/− with l -NIL. The role of NOS in VEGF-induced acute vascular permeability increase in quiescent vessels also was determined by using eNOS- and iNOS- deficient mice. VEGF superfusion significantly increased permeability in both WT and iNOS −/− mice but not in eNOS −/− mice. These findings suggest that eNOS plays a predominant role in VEGF-induced angiogenesis and vascular permeability. Thus, selective modulation of eNOS activity is a promising strategy for altering angiogenesis and vascular permeability in vivo .
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