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首页> 外文期刊>Diabetes/metabolism research and reviews >Podocyte-specific overexpression of metallothionein mitigates diabetic complications in the glomerular filtration barrier and glomerular histoarchitecture: A transmission electron microscopy stereometric analysis
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Podocyte-specific overexpression of metallothionein mitigates diabetic complications in the glomerular filtration barrier and glomerular histoarchitecture: A transmission electron microscopy stereometric analysis

机译:足细胞特异性金属硫蛋白的过表达减轻了肾小球滤过障碍和肾小球组织结构中的糖尿病并发症:透射电镜立体分析

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Background: We previously demonstrated that cellular and extracellular components of the blood-urine barrier in renal glomeruli are susceptible to damage in OVE transgenic mice, a valuable model of human diabetic nephropathy that expresses profound albuminuria. Methods: To test our hypothesis that glomerular filtration barrier damage in OVE mice may be the result of oxidative insult to podocytes, 150-day-old bi-transgenic OVENmt diabetic mice that overexpress the antioxidant metallothionein specifically in podocytes were examined by enzyme-linked immunosorbent assay for albuminuria mitigation and by unbiased transmission electron microscopy (TEM) stereometry for protection from chronic structural diabetic complications. Results: Although blood glucose and HbA1c levels were indistinguishable in OVE and OVENmt animals, albuminuria was significantly reduced (average 7-fold) in OVENmt mice through 8months of age. Interestingly, the Nmt transgene provided significant glomerular protection against diabetic nephropathic complications outside of the podocyte. Glomerular filtration barrier damage was reduced in OVENmt mice, including significantly increased area occupied by endothelial luminal fenestrations (~13%), significantly reduced glomerular basement membrane (GBM) thickening (~17%) and significantly less podocyte effacement (~18%). In addition, OVENmt mice exhibited significantly reduced glomerular volume (~50%), fewer glomerular endothelial cells (~33%), fewer mesangial cells (~57%) and fewer total glomerular cells (~40%). Conclusions: These results provide evidence of oxidative damage to podocytes induces primary diabetic nephropathic features including severe and sustained albuminuria, specific glomerular filtration barrier damage and alterations in glomerular endothelial and mesangial cell number. Importantly, these diabetic complications are significantly mitigated by podocyte targeted metallothionein overexpression.
机译:背景:我们先前证明,肾小球中血尿屏障的细胞和细胞外成分易受OVE转基因小鼠的损害,OVE转基因小鼠是表达深蛋白尿的人类糖尿​​病肾病的重要模型。方法:为了检验我们的假设,即OVE小鼠的肾小球滤过屏障损伤可能是对足细胞的氧化损伤的结果,通过酶联免疫吸附剂检查了150天大的双转基因OVENmt糖尿病小鼠,它们在足细胞中过表达了抗氧化金属硫蛋白,测定蛋白尿的方法,以及通过无偏透射电镜(TEM)立体定位技术来预防慢性糖尿病结构并发症。结果:尽管OVE和OVENmt动物的血糖和HbA1c水平无法区分,但直到8个月大时,OVENmt小鼠的蛋白尿明显减少(平均> 7倍)。有趣的是,Nmt转基因为足细胞外的糖尿病性肾病并发症提供了重要的肾小球保护作用。 OVENmt小鼠的肾小球滤过屏障损伤减少,包括内皮腔开窗所占面积显着增加(〜13%),肾小球基底膜(GBM)增厚显着减少(〜17%)和足细胞脱落明显减少(〜18%)。此外,OVENmt小鼠的肾小球体积明显减少(〜50%),肾小球内皮细胞减少(〜33%),肾小球系膜细胞减少(〜57%),总肾小球细胞减少(〜40%)。结论:这些结果提供了对足细胞的氧化损伤诱导的糖尿病原发性肾病特征的证据,包括严重和持续的白蛋白尿,特异性肾小球滤过屏障损伤以及肾小球内皮细胞和肾小球系膜细胞数的改变。重要的是,这些针对糖尿病的并发症可以通过针对足细胞的金属硫蛋白的过表达而得到明显缓解。

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