首页> 美国卫生研究院文献>International Journal of Clinical and Experimental Pathology >Astragaloside effect on TGF-β1 SMAD2/3 and α-SMA expression in the kidney tissues of diabetic KKAy mice
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Astragaloside effect on TGF-β1 SMAD2/3 and α-SMA expression in the kidney tissues of diabetic KKAy mice

机译:黄芪甲苷对糖尿病KKAy小鼠肾脏组织中TGF-β1SMAD2 / 3和α-SMA表达的影响

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摘要

Numerous cytokines participate in the occurrence and development of inflammation and renal interstitial fibrosis. Previous studies confirmed that TGF-β1 overexpressed in diabetic nephropathy. As a downstream signal protein of TGF-β1 family, SMAD has an important role in the process of α-SMA mediated renal interstitial fibrosis. This study aimed to study astragaloside effect on TGF-β1, SMAD2/3, and α-SMA expression in the kidney tissue of diabetic KKAy mice, to reveal its potential impact on renal interstitial fibrosis. 20 type II diabetic KKAy mice were randomly equally divided into model group and astragaloside group, while 10 male C57BL/6J mice were selected as the control. Astragaloside at 40 mg/(kg•d) was given when the KKAy mice fed with high-fat diet to 14 weeks old. The mice were killed at 24 weeks old and the kidney tissue samples were collected. Pathology morphological changes were observed. TGF-β1, SMAD2/3, and α-SMA expression levels were determined by immunohistochemistry. Compared with control, mice kidney in model group appeared obvious fibrosis and up-regulated blood glucose level, TGF-β1, SMAD2/3, and α-SMA expression (P < 0.05). Mice in astragaloside group exhibited alleviated renal interstitial fibrosis compared with the model. Its blood glucose level, TGF-β1, SMAD2/3, and α-SMA expression levels were significantly lower than the model group (P < 0.05). Astragaloside can delay the renal fibrosis process in diabetic mice by influencing the TGF-β/SMADS signaling pathway and down-regulating TGF-β1, SMAD2/3, and α-SMA expression.
机译:许多细胞因子参与炎症和肾间质纤维化的发生和发展。先前的研究证实,TGF-β1在糖尿病性肾病中过表达。作为TGF-β1家族的下游信号蛋白,SMAD在α-SMA介导的肾间质纤维化过程中具有重要作用。本研究旨在研究黄芪甲苷对糖尿病性KKAy小鼠肾脏组织中TGF-β1,SMAD2 / 3和α-SMA表达的影响,以揭示其对肾脏间质纤维化的潜在影响。将20只II型糖尿病KKAy小鼠随机分为模型组和黄芪甲苷组,同时选择10只雄性C57BL / 6J小鼠作为对照组。当KKAy小鼠高脂饮食喂养至14周龄时,给予40 mg /(kg•d)黄芪甲苷。在24周大时处死小鼠,并收集肾脏组织样品。观察病理形态学变化。通过免疫组织化学测定TGF-β1,SMAD2 / 3和α-SMA表达水平。与对照组相比,模型组小鼠肾脏明显纤维化,血糖,TGF-β1,SMAD2 / 3,α-SMA表达上调(P <0.05)。与模型相比,黄芪甲苷组小鼠的肾脏间质纤维化减轻。其血糖水平,TGF-β1,SMAD2 / 3和α-SMA表达水平明显低于模型组(P <0.05)。黄芪甲苷可通过影响TGF-β/ SMADS信号通路并下调TGF-β1,SMAD2 / 3和α-SMA表达来延迟糖尿病小鼠的肾纤维化过程。

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