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Shb 缺乏导致血管对功能失调的内皮的适应性改变。

Vascular adaptation to a dysfunctional endothelium as a consequence of Shb deficiency.

机构信息

Department of Medical Cell Biology, Uppsala University, Box 571, Husargatan 3, 75123, Uppsala, Sweden.

出版信息

Angiogenesis. 2012 Sep;15(3):469-80. doi: 10.1007/s10456-012-9275-z. Epub 2012 May 5.

Abstract

Vascular endothelial growth factor (VEGF)-A regulates angiogenesis, vascular morphology and permeability by signaling through its receptor VEGFR-2. The Shb adapter protein has previously been found to relay certain VEGFR-2 dependent signals and consequently vascular physiology and structure was assessed in Shb knockout mice. X-ray computed tomography of vessels larger than 24 μm diameter (micro-CT) after contrast injection revealed an increased frequency of 48-96 μm arterioles in the hindlimb calf muscle in Shb knockout mice. Intravital microscopy of the cremaster muscle demonstrated a less regular vasculature with fewer branch points and increased vessel tortuosity, changes that led to an increased blood flow velocity. Reduced in vivo angiogenesis was observed in Shb knockout Matrigel™ plugs. Unlike the wild-type situation, VEGF-A did not provoke a dissociation of VE-cadherin from adherens junctions in Shb knockout venules. The reduced angiogenesis and altered properties of junctions had consequences for two patho-physiological responses to arterial occlusion: vascular permeability was reduced in the Shb knockout cremaster muscle after ligation of one supplying artery and heat-induced blood flow determined by Laser-Doppler measurements was decreased in the hindlimb after ligation of the femoral artery. Consequently, the Shb knockout mouse exhibited structural and functional (angiogenesis and vascular permeability) vascular abnormalities that have implications for understanding the function of VEGF-A under physiological conditions.

摘要

血管内皮生长因子 (VEGF)-A 通过与其受体 VEGFR-2 信号转导来调节血管生成、血管形态和通透性。先前发现 Shb 衔接蛋白可传递某些 VEGFR-2 依赖性信号,因此评估了 Shb 敲除小鼠的血管生理学和结构。对比剂注射后对直径大于 24μm 的血管进行 X 射线计算机断层扫描(micro-CT)显示,Shb 敲除小鼠后肢小腿肌肉中 48-96μm 的小动脉频率增加。精索内肌的活体显微镜检查显示,血管更不规则,分支点更少,血管扭曲度增加,这些变化导致血流速度增加。在 Shb 敲除 Matrigel™ 塞中观察到血管生成减少。与野生型情况不同,VEGF-A 不会引起 Shb 敲除小静脉中 VE-钙黏蛋白与黏着斑分离。血管生成减少和连接处特性的改变对两种病理生理的动脉闭塞反应有影响:结扎一支供应动脉后,Shb 敲除精索内肌的血管通透性降低;结扎股动脉后,激光多普勒测量的后肢热诱导血流减少。因此,Shb 敲除小鼠表现出结构和功能(血管生成和血管通透性)血管异常,这对理解生理条件下 VEGF-A 的功能具有重要意义。

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