首页> 外文期刊>Journal of Agricultural and Food Chemistry >Quercetin Inhibits Advanced Glycation End Product Formation by Trapping Methylglyoxal and Glyoxal
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Quercetin Inhibits Advanced Glycation End Product Formation by Trapping Methylglyoxal and Glyoxal

机译:槲皮素通过捕获甲基乙二醛和乙二醛来抑制高级糖基化终产物的形成

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Methylglyoxal (MGO) and glyoxal (GO) not only are endogenous metabolites but also exist in exogenous resources, such as foods, beverages, urban atmosphere, and cigarette smoke. They have been identified as reactive dicarbonyl precursors of advanced glycation end products (AGEs), which have been associated with diabetes-related long-term complications. In this study, quercetin, a natural flavonol found in fruits, vegetables, leaves, and grains, could effectively inhibit the formation of AGEs in a dose-dependent manner via trapping reactive dicarbonyl compounds. More than 50.5% of GO and 80.1% of MGO were trapped at the same time by quercetin within 1 h under physiological conditions. Quercetin and MGO (or GO) were combined at different ratios, and the products generated from this reaction were analyzed with LC-MS. Both mono-MGO and di-MGO adducts of quercetin were detected in this assay using LC-MS, but only tiny amounts of mono-GO adducts of quercetin were found. Additionally, di-MGO adducts were observed as the dominant product with prolonged incubation time. In the bovine serum albumin (BSA)-MGO/GO system, quercetin traps MGO and GO directly and then significantly inhibits the formation of AGEs.
机译:甲基乙二醛(MGO)和乙二醛(GO)不仅是内源性代谢产物,而且还存在于诸如食物,饮料,城市大气和香烟烟雾等外源性资源中。它们已被确定为高级糖基化终产物(AGEs)的反应性二羰基前体,已与糖尿病相关的长期并发症相关。在这项研究中,槲皮素是一种在水果,蔬菜,树叶和谷物中发现的天然黄酮醇,可以通过捕获活性二羰基化合物以剂量依赖的方式有效抑制AGEs的形成。在生理条件下,槲皮素在1小时内同时捕获了超过50.5%的GO和80.1%的MGO。槲皮素和MGO(或GO)以不同的比例合并,并用LC-MS分析此反应生成的产物。使用LC-MS在该测定中检测到槲皮素的单MGO和di-MGO加合物,但仅发现了少量的槲皮素单GO的加合物。另外,观察到di-MGO加合物是延长培养时间的主要产物。在牛血清白蛋白(BSA)-MGO / GO系统中,槲皮素直接捕获MGO和GO,然后显着抑制AGEs的形成。

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