一氧化氮合酶
腹膜透析
腹膜
内皮一氧化氮合酶
下调和上调
内分泌学
血管内皮生长因子
一氧化氮
内科学
内皮
硝基酪氨酸
一氧化氮合酶Ⅲ型
医学
免疫染色
伊诺斯
病理
化学
生物化学
免疫组织化学
血管内皮生长因子受体
基因
作者
Sophie Combet,Toshio Miyata,Pierre Moulin,Dominique Pouthier,Éric Goffin,Olivier Devuyst
出处
期刊:Journal of The American Society of Nephrology
日期:2000-04-01
卷期号:11 (4): 717-728
被引量:197
摘要
Abstract. Long-term peritoneal dialysis (PD) is associated with alterations in peritoneal permeability and loss of ultrafiltration. These changes originate from increased peritoneal surface area, but the morphologic and molecular mechanisms involved remain unknown. The hypothesis that modifications of activity and/or expression of nitric oxide synthase (NOS) isozymes might play a role in these modifications, via enhanced local production of nitric oxide, was tested in this study. NOS activities were measured by the L-citrulline assay in peritoneal biopsies from seven control subjects, eight uremic patients immediately before the onset of PD, and 13 uremic patients on short-term (<18 mo, n = 6) or long-term (>18 mo, n = 7) PD. Peritoneal NOS activity is increased fivefold in long-term PD patients compared with control subjects. In uremic patients, NOS activity is positively correlated with the duration of PD. Increased NOS activity is mediated solely by Ca 2+ -dependent NOS and, as shown by immunoblotting, an upregulation of endothelial NOS. The biologic relevance of increased NOS in long-term PD was demonstrated by enhanced nitrotyrosine immunoreactivity and a significant increase in vascular density and endothelial area in the peritoneum. Immunoblotting and immunostaining studies demonstrated an upregulation of vascular endothelial growth factor (VEGF) mostly along the endothelium lining peritoneal blood vessels in long-term PD patients. In the latter, VEGF colocalized with the advanced glycation end product pentosidine deposits. These data provide a morphologic (angiogenesis and increased endothelial area) and molecular (enhanced NOS activity and endothelial NOS upregulation) basis for explaining the permeability changes observed in long-term PD. They also support the implication of local advanced glycation end product deposits and liberation of VEGF in that process.
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