首页> 美国卫生研究院文献>Experimental Diabetes Research >Both ERK/MAPK and TGF-Beta/Smad Signaling Pathways Play a Role in the Kidney Fibrosis of Diabetic Mice Accelerated by Blood Glucose Fluctuation
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Both ERK/MAPK and TGF-Beta/Smad Signaling Pathways Play a Role in the Kidney Fibrosis of Diabetic Mice Accelerated by Blood Glucose Fluctuation

机译:ERK / MAPK和TGF-β/ Smad信号通路均在血糖波动加速的糖尿病小鼠肾脏纤维化中发挥作用

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摘要

Background. The notion that diabetic nephropathy is the leading cause of renal fibrosis prompted us to investigate the effects of blood glucose fluctuation (BGF) under high glucose condition on kidney in the mice. Methods. The diabetic and BGF animal models were established in this study. Immunohistochemistry, Western blot, and RT-PCR analysis were applied to detect the expression of type I collagen, matrix metalloproteinase-1 (MMP1), metalloproteinase inhibitor 1 (TIMP1), transforming growth factor beta 1 (TGF-β1), phosphorylated-ERK, p38, smad2/3, and Akt. Results. BGF treatment increased type I collagen synthesis by two times compared with the control. The expression of MMP1 was reduced markedly while TIMP1 synthesis was enhanced after BGF treatment. ERK phosphorylation exhibits a significant increase in the mice treated with BGF. Furthermore, BGF can markedly upregulate TGF-β1 expression. The p-smad2 showed 2-fold increases compared with the only diabetic mice. However, p-AKT levels were unchanged after BGF treatment. Conclusions. These data demonstrate that BGF can accelerate the trend of kidney fibrosis in diabetic mice by increasing collagen production and inhibiting collagen degradation. Both ERK/MAPK and TGF-β/smad signaling pathways seem to play a role in the development of kidney fibrosis accelerated by blood glucose fluctuation.
机译:背景。糖尿病肾病是肾纤维化的主要原因,这一观念促使我们研究了高葡萄糖条件下血糖波动(BGF)对小鼠肾脏的影响。方法。在这项研究中建立了糖尿病和BGF动物模型。应用免疫组织化学,蛋白质印迹和RT-PCR分析检测I型胶原,基质金属蛋白酶-1(MMP1),金属蛋白酶抑制剂1(TIMP1),转化生长因子β1(TGF-β1),磷酸化ERK的表达,p38,smad2 / 3和Akt。结果。与对照相比,BGF处理使I型胶原蛋白合成增加了两倍。 BGF处理后,MMP1的表达显着降低,而TIMP1的合成增强。在用BGF处理的小鼠中,ERK磷酸化表现出明显的增加。此外,BGF可以明显上调TGF-β1的表达。与仅有的糖尿病小鼠相比,p-smad2显示增加了2倍。然而,BGF治疗后,p-AKT水平未改变。结论。这些数据表明,BGF可通过增加胶原蛋白的产生并抑制胶原蛋白的降解来加速糖尿病小鼠肾脏纤维化的趋势。 ERK / MAPK和TGF-β/ smad信号通路似乎都在血糖波动加速的肾纤维化发展中起作用。

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