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Notch Signaling Molecules Activate TGF-beta in Rat Mesangial Cells under High Glucose Conditions

机译:Notch信号传导分子在高葡萄糖条件下激活大鼠Mesangial细胞中的TGF-β

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摘要

The involvement of the Notch signaling pathway in the cellular differentiation of the mammalian kidney is established. Recently, the dysregulation of Notch signaling molecules has been identified in acute and chronic renal injuries, fibrosis models, and diabetic kidney biopsies. The canonical Notch ligand , Jaggedl, is upregulated in a transforming growth factor-beta- (TGF-beta-) dependent manner during chronic kidney disease. TGF-beta, a central mediator of renal fibrosis, also is a major contributor to the development of diabetic nephropathy. To explore the roles and possible mechanisms of Notch signaling molecules in the pathogenesis of diabetic nephropathy, we exposed cultured rat mesangial cells to a y-secretase inhibitor (DAPT) or high glucose and measured the expression of Notch signaling molecules and the fibrosis index. Notch pathway-related molecules, TGF-beta, and fibroneclin increased with exposure to high glucose and decreased with DAPT treatment. Our results suggest that the Notch signaling pathway may precipitate diabetic nephropathy via TGF-beta activation.
机译:建立了Notch信号通路在哺乳动物肾细胞分化中的参与。最近,在急性和慢性肾损伤,纤维化模型和糖尿病肾活检中鉴定了Notch信号传导分子的失调。在慢性肾疾病期间,规范凹凸配体jaggedl jagggedl在转化生长因子 - β-(TGF-β-)依赖性的方式上上调。 TGF-Beta是肾纤维化的中央介质,也是糖尿病肾病发展的主要因素。为了探讨Notch信号分子在糖尿病肾病发病机制中的作用和可能机制,我们将培养的大鼠乳腺细胞暴露于Y分泌酶抑制剂(DAPT)或高葡萄糖,并测量了Notch信号分子和纤维化指数的表达。 Notch Pathway相关分子,TGF-β和纤维纤维素随着高葡萄糖的暴露而增加,随着DAPT治疗而降低。我们的研究结果表明,陷波信号通路可能通过TGF-β激活沉淀糖尿病肾病。

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