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Advanced glycation end products cause epithelial-myofibroblast transdifferentiation via the receptor for advanced glycation end products (RAGE)

机译:晚期糖基化终产物通过晚期糖基化终产物(RAGE)的受体引起上皮-成纤维细胞转分化

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摘要

Tubulointerstitial disease, a prominent phenomenon in diabetic nephropathy, correlates with decline in renal function. The underlying pathogenic link between chronic hyperglycemia and the development of tubulointerstitial injury has not been fully elucidated, but myofibroblast formation represents a key step in the development of tubulointerstitial fibrosis. RAGE, the receptor for advanced glycation end products (AGEs), induces the expression of TGF-β and other cytokines that are proposed to mediate the transdifferentiation of epithelial cells to form myofibroblasts. Here we report specific binding of 125I-AGE-BSA to cell membranes prepared from a rat proximal tubule cell line and show that the binding site was RAGE. AGE exposure induced dose-dependent epithelial-myofibroblast transdifferentiation determined by morphological changes, de novo alpha smooth-muscle actin expression, and loss of epithelial E-cadherin staining. These effects could be blocked with neutralizing Ab’s to RAGE or to TGF-β. Transdifferentiation was also apparent in the proximal tubules of diabetic rats and in a renal biopsy from a patient with type 1 diabetes. The AGE cross-link breaker, phenyl-4,5-dimethylthiazolium bromide (ALT 711) reduced transdifferentiation in diabetic rats in association with reduced tubular AGE and TGF-β expression. This study provides a novel mechanism to explain the development of tubulointerstitial disease in diabetic nephropathy and provides a new treatment target.
机译:肾间质疾病是糖尿病性肾病中的一种突出现象,与肾功能下降有关。慢性高血糖与肾小管间质损伤发展之间的潜在致病联系尚未完全阐明,但是成肌纤维细胞的形成代表了肾小管间质纤维化发展的关键步骤。 RAGE是晚期糖基化终产物(AGEs)的受体,它诱导TGF-β和其他细胞因子的表达,这些因子被提议介导上皮细胞的转分化形成成肌纤维细胞。在这里,我们报告125 I-AGE-BSA特异性结合从大鼠近端小管细胞系制备的细胞膜,并显示结合位点是RAGE。 AGE暴露诱导的剂量依赖性上皮-成纤维细胞转分化由形态学变化,从头α平滑肌肌动蛋白表达和上皮E-钙黏着蛋白染色的丧失确定。通过中和Ab达到RAGE或TGF-β可以阻止这些作用。转分化在糖尿病大鼠的近端小管和1型糖尿病患者的肾脏活检中也很明显。 AGE交联破坏剂苯基-4,5-二甲基噻唑溴化物(ALT 711)降低了糖尿病大鼠的转分化,并降低了管状AGE和TGF-β的表达。该研究为解释糖尿病性肾病中肾小管间质疾病的发展提供了新的机制,并提供了新的治疗目标。

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