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首页> 外文期刊>Arteriosclerosis, thrombosis, and vascular biology >Essential role of copper-zinc superoxide dismutase for ischemia-induced neovascularization via modulation of bone marrow-derived endothelial progenitor cells.
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Essential role of copper-zinc superoxide dismutase for ischemia-induced neovascularization via modulation of bone marrow-derived endothelial progenitor cells.

机译:铜锌超氧化物歧化酶通过调节骨髓来源的内皮祖细胞在缺血诱导的新生血管形成中的重要作用。

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摘要

OBJECTIVE: To investigate the effect of oxidative stress on ischemia-induced neovascularization in copper-zinc (CuZn) superoxide dismutase (SOD)-deficient mice. METHODS AND RESULTS: In the vascular wall, CuZnSOD is essential for protecting against excessive oxidative stress and maintaining endothelial function. However, its specific role for the development of new vessels in response to ischemia is unknown. After surgically induced hind limb ischemia, CuZnSOD-deficient mice showed impaired neovascularization, as assessed by blood flow recuperation (laser Doppler) and capillary density in the ischemic muscles. This was associated with increased levels of oxidative stress in ischemic tissues and peripheral blood, together with reduced plasmatic NO production. CuZnSOD-deficient mice demonstrated an important reduction in the number of endothelial progenitor cells (EPCs) in the bone marrow and spleen. Moreover, EPCs isolated from CuZnSOD-deficient mice showed increased oxidative stress levels, decreased NO production, and a reduced ability to migrate and integrate into capillary-like networks. Importantly, the functional activities of CuZnSOD-deficient EPCs were rescued after treatment with the SOD-mimetic Tempol (a membrane-permeable radical scavenger) or the NO donor sodium nitroprusside (SNP). Moreover, the neovascularization defect in CuZnSOD-deficient mice could be rescued by wild-type (but not CuZnSOD-deficient) EPC supplementation. CONCLUSIONS: Protection against oxidative stress by CuZnSOD may be essential for EPC function and reparative neovascularization after ischemia.
机译:目的:研究氧化应激对缺氧铜锌(CuZn)超氧化物歧化酶(SOD)小鼠缺血诱导的新生血管形成的影响。方法和结果:在血管壁,CuZnSOD对于防止过度氧化应激和维持内皮功能至关重要。但是,其在响应缺血的新血管发育中的特定作用尚不清楚。手术诱发的后肢缺血后,CuZnSOD缺陷小鼠表现出新血管形成受损,这是通过缺血性肌肉的血流恢复(激光多普勒)和毛细血管密度评估得出的。这与缺血组织和外周血中氧化应激水平的升高以及血浆NO生成的减少有关。缺乏CuZnSOD的小鼠证明了骨髓和脾脏中内皮祖细胞(EPC)数量的重要减少。此外,从缺乏CuZnSOD的小鼠中分离出的EPC表现出增加的氧化应激水平,减少的NO产生,以及迁移和整合入毛细管状网络的能力降低。重要的是,在用SOD模拟的Tempol(膜可渗透的自由基清除剂)或NO供体硝普钠(SNP)处理后,可恢复CuZnSOD缺陷型EPC的功能活性。此外,可以通过补充野生型(但不是CuZnSOD缺陷型)EPC来挽救CuZnSOD缺陷型小鼠的新血管形成缺陷。结论:CuZnSOD预防氧化应激对于缺血后EPC功能和修复性新血管形成可能是必不可少的。

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