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首页> 外文期刊>International Journal of Experimental Diabetes Research: Experimental Diabesity Research >Ethyl Pyruvate Prevents Renal Damage Induced by Methylglyoxal-Derived Advanced Glycation End Products
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Ethyl Pyruvate Prevents Renal Damage Induced by Methylglyoxal-Derived Advanced Glycation End Products

机译:丙酮酸乙基丙酮酸可防止甲基乙二醛衍生的先进糖糖末端产物诱导的肾损伤

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The renal accumulation of advanced glycation end products (AGEs) is a causative factor of various renal diseases, including chronic kidney disease and diabetic nephropathy. AGE inhibitors, such as aminoguanidine and pyridoxamine, have the therapeutic activities for reversing the increase in renal AGE burden. This study evaluated the inhibitory effects of ethyl pyruvate (EP) on methylglyoxal- (MGO-) modified AGE cross-links with proteins in vitro. We also determined the potential activity of EP in reducing the renal AGE burden in exogenously MGO-injected rats. EP inhibited MGO-modified AGE-bovine serum albumin (BSA) cross-links to collagen () in a dose-dependent manner, and its activity was stronger than aminoguanidine (). In addition, EP directly trapped MGO () in vitro. In exogenous MGO-injected rats, EP suppressed AGE burden and MGO-induced oxidative injury in renal tissues. These activities of EP on the MGO-mediated AGEs cross-links with protein in vitro and in vivo showed its pharmacological potential for inhibiting AGE-induced renal diseases.
机译:先进的糖化末端产品(年龄)的肾脏积累是各种肾病的致病因素,包括慢性肾病和糖尿病肾病。年龄抑制剂,如氨基胍和吡哆胺,具有逆转肾年龄负担的增加的治疗活动。该研究评估了乙基丙酮酸(EP)对体外蛋白质蛋白质与蛋白质的甲基乙基甲醛(MgO-)改性年龄交联的抑制作用。我们还确定了EP在降低外源MgO注射大鼠中的肾年龄负荷时潜在的潜在活动。 EP抑制MgO改性的年龄 - 牛血清白蛋白(BSA)以剂量依赖性方式与胶原()交联,其活性强于氨基胍()。此外,EP直接捕获了体外MgO()。在外源MgO注射大鼠中,EP抑制年龄负荷和MgO诱导的肾组织氧化损伤。这些EP在MgO介导的年龄在体外和体内蛋白质和体内的交联的活动表明其抑制年龄诱导的肾病的药理潜力。

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