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首页> 外文期刊>Journal of Pathology: Journal of the Pathological Society of Great Britain and Ireland >Expression of vascular endothelial growth factor in renal vascular disease and renal allografts.
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Expression of vascular endothelial growth factor in renal vascular disease and renal allografts.

机译:血管内皮生长因子在肾血管疾病和肾同种异体移植物中的表达。

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Vascular endothelial growth factor (VEGF) is a dimeric glycoprotein that exerts a proliferative effect specifically on endothelial cells. VEGF can increase vascular permeability and collagenase activity, is chemotactic for monocytes, and may dilate blood vessels. It can be induced by phorbol ester and cAMP in both mesenchymal and epithelial cells. In vitro cell culture experiments suggest that VEGF is upregulated by oxygen deprivation. In this study we tested whether in vivo acute and/or chronic reduction of renal blood flow by vascular obstruction would result in increased expression of VEGF mRNA and protein. Three normal kidneys, five human kidneys with narrowing of preglomerular vessels by vascular rejection or by vasculitis, and eight kidneys with nephrosclerosis and/or diabetic nephropathy were examined. In situ hybridization with 35S-labelled riboprobes showed a pronounced expression of VEGF mRNA in acutely hypoxic proximal and distal tubules of both the cortex and medulla; VEGF protein was demonstrated in the epithelia of these tubules by immunohistochemistry. In kidneys with chronically reduced blood flow, the majority of atrophic tubules were negative for VEGF mRNA and protein, although interstitial cells expressed VEGF mRNA. In arcuate arteries showing intimal and adventitial fibrosis, some medial smooth muscle cells were positive for VEGF mRNA. In glomeruli with segmental sclerosis, viable podocytes showed a prominent signal for VEGF mRNA. Mesangial cells did not express VEGF in the cases studied. It is possible that hypoxia itself led to the upregulation of VEGF in tubular epithelia and vascular smooth muscle cells. The vasodilatory and permeability-promoting effects of the endothelial growth factor produced by damaged tubular epithelia may constitute a mechanism to alleviate a decrease in blood flow and substrate availability and to re-establish vascular integrity.
机译:血管内皮生长因子(VEGF)是一种二聚体糖蛋白,其特异性地对内皮细胞具有特异性的增殖作用。 VEGF可以提高血管渗透性和胶原酶活性,是单核细胞的趋化性,并且可以扩张血管。它可以由间充质和上皮细胞中的Phorbol酯和阵营诱导。体外细胞培养实验表明VEGF通过缺氧来上调。在这项研究中,我们测试了血管阻塞的体内急性和/或慢性降低肾血流是否会导致VEGF mRNA和蛋白质的表达增加。三种正常肾脏,通过血管抑制或血管炎或血管炎缩小前一种人肾脏,以及血管炎和八个肾脏粥样硬化和/或糖尿病肾病的肾脏。原位杂交与35℃标记的核糖体显示VEGF mRNA在皮质和髓质的急性缺氧近端和远端小管中的显着表达;通过免疫组织化学在这些小管的上皮细胞上证明了VEGF蛋白。在肾脏的肾脏下,长期降低血流,大多数萎缩小管对VEGF mRNA和蛋白质负是阴性,尽管间质细胞表达了VEGF mRNA。在显示内膜和过滤纤维化的弧动脉中,一些内侧平滑肌细胞对于VEGF mRNA是阳性的。在具有节段性硬化症的肾小球中,可行的大织物显示出VEGF mRNA的突出信号。在研究的病例中,乳房细胞没有表达VEGF。缺氧本身可能导致对象上皮和血管平滑肌细胞的VEGF的上调。受损管状上皮细胞产生的内皮生长因子的血管舒张和渗透性促进效果可以构成缓解血流和基材可用性降低和重建血管完整性的机制。

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