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Endothelial cell-specific overexpression of endothelial nitric oxide synthase in Ins2Akita mice exacerbates diabetic nephropathy

机译:Ins2akita小鼠中内皮一氧化氮合酶的内皮细胞特异性过表达加剧了糖尿病肾病

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Previous studies demonstrated that global deficiency of eNOS in diabetic mice exacerbated renal lesions and that overexpression of eNOS may protect against tissue injury. Our study revealed for the first time overexpression of eNOS leads to disease progression rather than protection. Transgenic mice selectively expressing eNOS in endothelial cells (eNOSTg) were cross bred with Ins2Akita type-1 (AK) diabetic mice to generate eNOS overexpressing eNOSTg/AK mice. Wild type, eNOSTg, AK and eNOSTg/AK mice were assessed for kidney function and blood glucose levels. Remarkably, overexpressing eNOSTg mice showed evidence of unpredicted glomerular injury with segmental mesangiolysis and occasional microaneurysms. Notably, in eNOSTg/AK mice overexpression of eNOS led to increased glomerular/endothelial injury that was associated with increased superoxide levels and renal dysfunction. Results indicate for the first time that overexpressing eNOS in endothelial cells cannot ameliorate diabetic lesions, but paradoxically leads to progression of nephropathy likely due to eNOS uncoupling and superoxide upsurge. This novel finding has a significant impact on current therapeutic strategies to improve endothelial function and prevent progression of diabetic renal disease. Further, the eNOSTg/AK model developed in this study has significant translational potentials for elucidating the underlying mechanism implicated in the deflected function of eNOS in diabetic nephropathy. (C) 2018 Elsevier Inc. All rights reserved.
机译:以前的研究表明,糖尿病小鼠在糖尿病小鼠中的全局缺乏加剧了肾病变性,并且eNOS的过度表达可以防止组织损伤。我们的研究表明,eNOS的第一次过表达导致疾病进展而不是保护。在内皮细胞(ENOSTG)中选择性地表达enos的转基因小鼠用INS2AKITA-1(AK)糖尿病小鼠的交叉繁殖,以产生过表达的ENOSTG / AK小鼠的enos。评估野生型,ENOSTG,AK和ENOSTG / AK小鼠的肾功能和血糖水平。值得注意的是,过表达莴苣小鼠显示出与节段性半沉默分解和偶尔的微肿瘤的未预测性肾小球损伤的证据。值得注意的是,在ENOS的Enostg / Ak小鼠过表达中导致肾小球/内皮损伤增加,所述肾小球/内皮损伤与增加的超氧化物水平和肾功能不全相关。结果表明,在内皮细胞中过度表达enos的第一次不能改善糖尿病病变,但由于eNOS解耦和超氧化物升高,矛盾导致肾病的进展。这部小型发现对当前治疗策略有重大影响,提高内皮功能,防止糖尿病肾病的进展。此外,本研究开发的Enostg / AK模型具有显着的平移电位,用于阐明涉及糖尿病肾病中enos的偏转功能的潜在机制。 (c)2018年Elsevier Inc.保留所有权利。

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