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Advanced glycation end products-mediated hypertrophy is negatively regulated by tetrahydrobiopterin in renal tubular cells

机译:肾小管细胞中四氢生物蝶呤对晚期糖基化终产物介导的肥大产生负调节作用

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摘要

Diabetic nephropathy (DN) is the most common cause of end-stage renal disease worldwide. The accumulation of advanced glycation end products (AGE) is a key mediator of renal tubular hypertrophy in DN. Elimination of tetrahydrobiopterin (BH 4) and nitric oxide (NO) bioavailability may contribute to the aggravation of DN. The present study aims to explore any possible beneficial effect of exogenous BH 4 in alleviating the AGE-induced renal tubular hypertrophy in DN. Thus, renal tubular cells were treated with BH 4, BH 2, sepiapterin, or DAHP in the presence of AGE. We found that AGE (but not non-glycated BSA) markedly reduced NO production and increased hypertrophy index in these cells. Exogenous BH 4/BH 2 and sepiapterin treatments attenuated AGE-inhibited the iNOS/NO/GTPCH I protein synthesis. Moreover, BH 4 and BH 2 significantly reversed AGE-enhanced the JAK2-STAT1/STAT3 activation. The abilities of BH 4 and BH 2 to inhibit AGE-induced renal cellular hypertrophy were verified by the observation that BH 4 and BH 2 inhibited hypertrophic growth and the protein synthesis of p27 Kip1 and α-SMA. These findings indicate for the first time that exogenous BH 4 and BH 2 attenuate AGE-induced hypertrophic effect at least partly by increasing the iNOS/GTPCH I synthesis and NO generation in renal tubular cells.
机译:糖尿病肾病(DN)是世界范围内终末期肾脏疾病的最常见原因。晚期糖基化终产物(AGE)的积累是DN中肾小管肥大的关键介质。消除四氢生物蝶呤(BH 4)和一氧化氮(NO)的生物利用度可能会导致DN恶化。本研究旨在探讨外源BH 4减轻AGE诱导的DN肾小管肥大的任何可能的有益作用。因此,在存在AGE的情况下,用BH 4,BH 2,Sepaapterin或DAHP处理肾小管细胞。我们发现AGE(但不是非糖化的BSA)显着降低了这些细胞中的NO生成并增加了肥大指数。外源BH 4 / BH 2和Sepaapterin处理可减弱AGE抑制的iNOS / NO / GTPCH I蛋白合成。此外,BH 4和BH 2显着逆转了AGE增强了JAK2-STAT1 / STAT3的激活。通过观察到BH 4和BH 2抑制肥大性生长以及p27 Kip1和α-SMA的蛋白质合成,证实了BH 4和BH 2抑制AGE诱导的肾细胞肥大的能力。这些发现首次表明,外源性BH 4和BH 2至少部分地通过增加iNOS / GTPCH I的合成和肾小管细胞中NO的生成来减弱AGE诱导的肥大作用。

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