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首页> 外文期刊>European review for medical and pharmacological sciences. >Protective effects of gliclazide on high glucose and AGEs-induced damage of glomerular mesangial cells and renal tubular epithelial cells via inhibiting RAGE-p22phox-NF-kB pathway
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Protective effects of gliclazide on high glucose and AGEs-induced damage of glomerular mesangial cells and renal tubular epithelial cells via inhibiting RAGE-p22phox-NF-kB pathway

机译:Gliclazide对高葡萄糖和肾小球纱线细胞和肾小管上皮细胞损伤的保护作用通过抑制RAGE-P22phox-NF-KB途径

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OBJECTIVE: Gliclazide is one of the most widely used therapeutic drugs for diabetes. As a second-generation sulfonylurea oral hypoglycemic drug, it can lower blood glucose level and delay the occurrence and development of diabetic nephropathy (DN). However, the underlying mechanism remains unclear. Therefore, the aim of this study was to explore whether gliclazide had protective effects on high glucose and advanced glycation end products (AGEs)-induced injury of human mesangial cells (HMCs) and renal tubular epithelial cells. MATERIALS AND METHODS: HMC and renal tubular epithelial cell lines [human kidney 2 (HK-2)] were cultured in vitro. All cells were then divided into the follow groups: 1) blank control group (5.6 mmol/L glucose), 2) AGEs group [400 μg/mL AGE-bovine serum albumin (AGE-BSA)], 3) high glucose group (25 mmol/L glucose), 4) gliclazide + AGEs group (400 μg/mL AGE-BSA + 20 μmol/L gliclazide) and 5) gliclazide + high glucose group (25 mmol/L glucose + 20 μmol/L gliclazide). Cell counting kit-8 (CCK-8) assay was adopted to determine cell viability. Flow cytometry was used to detect cell apoptosis. The levels of malondialdehyde (MDA), superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) were measured as well. Furthermore, the mRNA expressions of receptor for AGE (RAGE), p22phox and nuclear factor kappa-light-chain-enhancer of activated B cells (NF-κB) were measured via fluorescence quantitative Real-time polymerase chain reaction (qRT-PCR). RESULTS: Compared with control group, significantly accelerated apoptosis of HMCs and HK-2, increased MDA level, decreased SOD and GSH-Px levels, and up-regulated mRNA expressions of RAGE, p22phox and NF-κB were observed in HMCs and HK-2 of high glucose group and AGEs group. Meanwhile, there were obviously alleviated apoptosis of HMCs and HK-2, decreased MDA level, increased SOD and GSH-Px levels, as well as down-regulated mRNA expressions of RAGE, p22phox and NF-κB in HMCs and HK-2 of gliclazide group compared with high glucose and AGEs group. Furthermore, significant correlations were found between the mRNA expression of RAGE and the apoptosis rate of HMCs and HK-2 (HMCs: r=0.701, p=0.004 and HK-2: r=0.633, p=0.011). CONCLUSIONS: Gliclazide has protective effects on high glucose and AGEs-induced damage of glomerular mesangial cells and renal tubular epithelial cells via inhibiting RAGE-NADPH oxidase-NF-kB pathway.
机译:目的:Gliclazide是糖尿病最广泛使用的治疗药物之一。作为第二代磺脲类口腔降血糖药物,它可以降低血糖水平并延缓糖尿病肾病(DN)的发生和发展。但是,潜在机制仍然不清楚。因此,本研究的目的是探讨Gliclazide是否对高葡萄糖和先进的糖糖末端产物(年龄)诱导人体乳腺细胞(HMC)和肾小管上皮细胞的损伤具有保护作用。材料和方法:HMC和肾小管上皮细胞系[人肾2(HK-2)]在体外培养。然后将所有细胞分为遵循基团:1)坯料对照组(5.6mmol / L葡萄糖),2)岁[400μg/ ml龄牛血清白蛋白(Age-BSA)],3)高葡萄糖组( 25mmol / L葡萄糖),4)Gliclazide +年龄组(400μg/ ml龄-bsa +20μmol/ l gliclazide)和5)Gliclazide +高葡萄糖组(25mmol / L葡萄糖+20μmol/ l gliclazide)。采用细胞计数试剂盒-8(CCK-8)测定来确定细胞活力。流式细胞术用于检测细胞凋亡。还测量丙二醛(MDA),超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GSH-PX)的水平。此外,通过荧光定量实时聚合酶链反应(QRT-PCR)测量活化B细胞(NF-κB)的年龄(RAGE),P22phox和核因子Kappa-Light链 - 增强剂的受体的mRNA表达。结果:与对照组相比,HMCs和HK-2的显着加速凋亡,MDA水平增加,降低SOD和GSH-PX水平,并在HMC和HK中观察到愤怒,P22phox和NF-κB的上调mRNA表达。 2高葡萄糖组和年龄组。同时,明显缓解了HMC和HK-2的凋亡,降低了MDA水平,增加了SOD和GSH-PX水平,以及HMC和Gliclazide的HMC和HK-2中的愤怒,P22phox和NF-κB的下调mRNA表达群体与高葡萄糖和年龄组相比。此外,在RAGE的mRNA表达和HMC和HK-2的凋亡速率之间发现了显着的相关性(HMC:R = 0.701,P = 0.004和HK-2:R = 0.633,P = 0.011)。结论:通过抑制RAGE-NADPH氧化酶-NF-KB途径,Gliclazide对高葡萄糖和肾小管上皮细胞的高葡萄糖和肾小管上皮细胞的保护作用。

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