首页> 美国卫生研究院文献>Molecules >Identification of Pinocembrin as an Anti-Glycation Agent and α-Glucosidase Inhibitor from Fingerroot (Boesenbergia rotunda): The Tentative Structure–Activity Relationship towards MG-Trapping Activity
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Identification of Pinocembrin as an Anti-Glycation Agent and α-Glucosidase Inhibitor from Fingerroot (Boesenbergia rotunda): The Tentative Structure–Activity Relationship towards MG-Trapping Activity

机译:Pinocembrin作为抗糖化剂和α-葡萄糖苷酶抑制剂的鉴定从圆根(Boesenbergia圆形建筑):MG诱捕活动的初步结构-活动关系。

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摘要

Diabetes mellitus (DM) is a disease that is caused by a malfunction of carbohydrate metabolism, which plays an important role in the development of long-term diabetic complications. The excess glucose can be transformed to methylglyoxal (MG), a potential precursor of glycation. Glycation is a spontaneous non-enzymatic reaction that initially yields advanced glycation end-products (AGEs), which ultimately triggers several severe complications. Therefore, the inhibition of AGEs formation is the imperative approach for alleviating diabetic complications. The aim of this research was to investigate the glycation and α-glucosidase inhibitory abilities of compounds isolated from fingerroot. The dichloromethane extract afforded three flavanones, two chalcones, two dihydrochalcones, and one kavalactone. Most of the isolated compounds showed higher inhibition effect against AGEs formation than aminoguanidine (AG). Subsequent evaluation in MG-trapping assay indicated that their trapping potency was relatively comparable to AG. Their structure-activity relationships (SAR) of MG-trapping activity were investigated using the comparison of the structures of flavonoids. In addition, pinocembrin displayed moderate α-glucosidase inhibition against both maltase and sucrose, with IC50 values of 0.35 ± 0.021 and 0.39 ± 0.020 mM, respectively.
机译:糖尿病(DM)是由碳水化合物代谢异常引起的疾病,它在长期糖尿病并发症的发生中起重要作用。过量的葡萄糖可以转化为甲基乙二醛(MG),一种潜在的糖基化前体。糖基化是一种自发的非酶促反应,最初会产生高级糖基化终产物(AGEs),最终会引发一些严重的并发症。因此,抑制AGEs的形成是减轻糖尿病并发症的必要方法。这项研究的目的是研究从指根分离的化合物的糖基化和α-葡萄糖苷酶抑制能力。二氯甲烷萃取物提供了三个黄烷酮,两个查耳酮,两个二氢查耳酮和一个卡瓦酸内酯。与氨基胍(AG)相比,大多数分离出的化合物对AGEs的抑制作用更高。随后的MG捕获分析评估表明,它们的捕获能力与AG相当。通过类黄酮结构的比较研究了它们的MG-捕获活性的结构-活性关系(SAR)。此外,松球菌素对麦芽糖酶和蔗糖均显示出中等程度的α-葡萄糖苷酶抑制作用,IC50值分别为0.35±0.021和0.39±0.020 mM。

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