Walton Chad B, Ecker Jennifer, Anderson Cynthia D, Outten Joel T, Allison Randall Z, Shohet Ralph V
Department of Medicine, University of Hawaii, Honolulu, HI 96813, USA.
Vasc Cell. 2013 Aug 29;5(1):15. doi: 10.1186/2045-824X-5-15.
The heterodimeric, oxygen-sensitive transcription factor Hypoxia Inducible Factor-1 (HIF-1) orchestrates angiogenesis and plays a key role in the response to ischemia and the growth of cancers.
We developed a transgenic mouse line in which expression of an oxygen-stable HIF-1α construct was controlled by a tetracycline-responsive promoter. HIF-1α expression was induced for up to 28 days in adult mouse heart, resulting in angiogenesis and progressive ventricular dysfunction.
Gross inspection demonstrated enlarged hearts with large epicardial vessels with prominent side branches. Perfusion curves obtained by ultrasound contrast analysis demonstrated a significant increase in the myocardial red cell volume after 28 days of HIF-1α expression. Corrosion casts of cardiac vessels were made with a new low-viscosity resin that can fill the vasculature down to the level of the capillaries. Scanning electron microscopy of these casts reveal "lakes" of capillaries forming off of larger vessels after HIF expression, and support the rapid formation of mature neovascularization. Pro-angiogenic factors DLL-4, Notch-1, and PDGF-β, were evaluated by immunohistochemistry and Western blots, and support a pattern of progressive functional neoangiogenesis.
This study demonstrates the structural characteristics of HIF-directed angiogenesis and supports the utility of manipulation of HIF signaling to enhance perfusion and treat ischemia.
异二聚体、氧敏感转录因子缺氧诱导因子-1(HIF-1)调控血管生成,在缺血反应和癌症生长中起关键作用。
我们构建了一种转基因小鼠品系,其中氧稳定的HIF-1α构建体的表达由四环素反应性启动子控制。在成年小鼠心脏中诱导HIF-1α表达长达28天,导致血管生成和进行性心室功能障碍。
大体检查显示心脏增大,心外膜血管粗大,侧支明显。通过超声造影分析获得的灌注曲线显示,HIF-1α表达28天后心肌红细胞体积显著增加。用一种新的低粘度树脂制作心脏血管铸型,该树脂可填充血管系统直至毛细血管水平。对这些铸型进行扫描电子显微镜检查发现,HIF表达后,较大血管旁形成了毛细血管“湖”,支持成熟新生血管的快速形成。通过免疫组织化学和蛋白质印迹法评估促血管生成因子DLL-4、Notch-1和血小板衍生生长因子-β(PDGF-β),支持进行性功能新生血管生成模式。
本研究证明了HIF介导的血管生成的结构特征,并支持操纵HIF信号以增强灌注和治疗缺血的实用性。