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烟酰胺腺嘌呤二核苷酸磷酸氧化酶Nox5加速糖尿病肾病中的肾损伤。

NADPH Oxidase Nox5 Accelerates Renal Injury in Diabetic Nephropathy.

作者信息

Jha Jay C, Banal Claudine, Okabe Jun, Gray Stephen P, Hettige Thushan, Chow Bryna S M, Thallas-Bonke Vicki, De Vos Lisanne, Holterman Chet E, Coughlan Melinda T, Power David A, Skene Alison, Ekinci Elif I, Cooper Mark E, Touyz Rhian M, Kennedy Chris R, Jandeleit-Dahm Karin

机构信息

JDRF Danielle Alberti Memorial Centre for Diabetic Complications, Diabetic Complications Division, Baker IDI Heart and Diabetes Institute, Melbourne, Australia.

Department of Diabetes, Central Clinical School, Monash University, Melbourne, Australia.

出版信息

Diabetes. 2017 Oct;66(10):2691-2703. doi: 10.2337/db16-1585. Epub 2017 Jul 26.

Abstract

NADPH oxidase-derived excessive production of reactive oxygen species (ROS) in the kidney plays a key role in mediating renal injury in diabetes. Pathological changes in diabetes include mesangial expansion and accumulation of extracellular matrix (ECM) leading to glomerulosclerosis. There is a paucity of data about the role of the Nox5 isoform of NADPH oxidase in animal models of diabetic nephropathy since Nox5 is absent in the mouse genome. Thus, we examined the role of Nox5 in human diabetic nephropathy in human mesangial cells and in an inducible human Nox5 transgenic mouse exposed to streptozotocin-induced diabetes. In human kidney biopsies, Nox5 was identified to be expressed in glomeruli, which appeared to be increased in diabetes. Colocalization demonstrated Nox5 expression in mesangial cells. In vitro, silencing of Nox5 in human mesangial cells was associated with attenuation of the hyperglycemia and TGF-β1-induced enhanced ROS production, increased expression of profibrotic and proinflammatory mediators, and increased TRPC6, PKC-α, and PKC-β expression. In vivo, vascular smooth muscle cell/mesangial cell-specific overexpression of Nox5 in a mouse model of diabetic nephropathy showed enhanced glomerular ROS production, accelerated glomerulosclerosis, mesangial expansion, and ECM protein (collagen IV and fibronectin) accumulation as well as increased macrophage infiltration and expression of the proinflammatory chemokine MCP-1. Collectively, this study provides evidence of a role for Nox5 and its derived ROS in promoting progression of diabetic nephropathy.

摘要

肾脏中烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶产生的过量活性氧(ROS)在介导糖尿病肾损伤中起关键作用。糖尿病的病理变化包括系膜扩张和细胞外基质(ECM)积聚,导致肾小球硬化。由于小鼠基因组中不存在Nox5,关于NADPH氧化酶的Nox5亚型在糖尿病肾病动物模型中的作用的数据很少。因此,我们在人系膜细胞和暴露于链脲佐菌素诱导的糖尿病的可诱导人Nox5转基因小鼠中研究了Nox5在人糖尿病肾病中的作用。在人肾活检中,发现Nox5在肾小球中表达,在糖尿病中其表达似乎增加。共定位显示Nox5在系膜细胞中表达。在体外,人系膜细胞中Nox5的沉默与高血糖和转化生长因子-β1诱导的ROS产生增强的减弱、促纤维化和促炎介质表达的增加以及瞬时受体电位通道6(TRPC6)、蛋白激酶C-α(PKC-α)和蛋白激酶C-β(PKC-β)表达的增加有关。在体内,糖尿病肾病小鼠模型中血管平滑肌细胞/系膜细胞特异性过表达Nox5显示肾小球ROS产生增强、肾小球硬化加速、系膜扩张、ECM蛋白(IV型胶原和纤连蛋白)积聚以及巨噬细胞浸润增加和促炎趋化因子单核细胞趋化蛋白-1(MCP-1)表达增加。总的来说,这项研究提供了Nox5及其衍生的ROS在促进糖尿病肾病进展中起作用的证据。

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