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首页> 外文期刊>Biochemical Pharmacology >Therapeutic angiogenesis of mouse hind limb ischemia by novel peptide activating GRP78 receptor on endothelial cells.
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Therapeutic angiogenesis of mouse hind limb ischemia by novel peptide activating GRP78 receptor on endothelial cells.

机译:通过新型肽激活内皮细胞上的GRP78受体,治疗小鼠后肢缺血性血管新生。

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摘要

Therapeutic angiogenesis emerged as a non-invasive mean of promoting neovascularization in ischemic tissues. We have searched for new molecules that induce angiogenesis by screening a phage display combinatory peptide library on endothelial cells. One of the selected peptides identified by binding to endothelial cells under hypoxic conditions was further studied. The aim of this study was to assess the therapeutic value of this peptide, RoY, in a mouse hind limb ischemia model and to identify it's receptor on endothelial cells. RoY, a 12 amino-acid synthetic peptide, induced in vitro angiogeneic activity under hypoxic conditions by increasing endothelial cell proliferation, migration and tube formation. In order to assess its therapeutic properties in ischemic tissues, a hind limb ischemia model was induced in C57BL mice by a femoral artery excision. A single local intramuscular injection of RoY peptide to the operated limb, significantly restored blood perfusion and alleviated hind limb ischemia as determined by a laser Doppler imager. Increased capillary density in histological sections corroborated these findings. Protein precipitation and mass spectroscopy studies identified GRP78, a heat shock protein, as the peptide-binding membrane receptor that was increased on endothelial cell membranes under hypoxic conditions. This study demonstrates the efficacy of RoY peptide in alleviation of hind limb ischemia. In addition, it provides evidence that GRP78 is an angiogenic receptor on hypoxic endothelial cells.
机译:治疗性血管生成作为促进缺血组织中新血管形成的非侵入性手段而出现。我们已经通过筛选内皮细胞上的噬菌体展示组合肽库来寻找诱导血管生成的新分子。进一步研究了在缺氧条件下通过与内皮细胞结合而鉴定出的一种选定肽。这项研究的目的是评估这种肽RoY在小鼠后肢局部缺血模型中的治疗价值,并确定其在内皮细胞上的受体。 RoY是一种12个氨基酸的合成肽,在缺氧条件下通过增加内皮细胞增殖,迁移和管形成来诱导体外血管生成活性。为了评估其在缺血组织中的治疗特性,通过股动脉切除在C57BL小鼠中诱导了后肢缺血模型。通过激光多普勒成像仪确定,向手术肢体单次局部肌肉注射RoY肽可显着恢复血液灌注并减轻后肢缺血。组织切片中毛细血管密度的增加证实了这些发现。蛋白质沉淀和质谱研究确定了热休克蛋白GRP78是在缺氧条件下在内皮细胞膜上增加的肽结合膜受体。这项研究证明了RoY肽在减轻后肢缺血方面的功效。另外,它提供证据表明GRP78是低氧内皮细胞上的血管生成受体。

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