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槲皮素作为氨基胍在抑制糖基化产物方面的更优良替代品。

Quercetin as a finer substitute to aminoguanidine in the inhibition of glycation products.

作者信息

Ashraf Jalaluddin M, Shahab Uzma, Tabrez Shams, Lee Eun Ju, Choi Inho, Ahmad Saheem

机构信息

School of Biotechnology, Yeungnam University, Gyeongsan, Republic of Korea.

Department of Biochemistry, King George's Medical University, Lucknow, U.P., India.

出版信息

Int J Biol Macromol. 2015;77:188-92. doi: 10.1016/j.ijbiomac.2015.03.021. Epub 2015 Mar 20.

Abstract

Non-enzymatic glycation is the addition of a free carbonyl group of a reducing sugar to the free amino groups of proteins, which results in the formation of early and advanced glycation end-products (AGEs). Glycation reaction is profoundly associated with diabetes and its secondary complications, such as nephropathy and neuropathy. Glyoxal is a carbonyl species that reacts rapidly with the free amino groups of proteins to form AGEs. While the formation of AGEs with various glycating agents has previously been demonstrated, no extensive studies have been conducted to assess the role of quercetin in all three stages of glycation (early, intermediate and late). In this study, we report the glycation of HSA (human serum albumin) and its characterization by several spectroscopic techniques. Furthermore, inhibition of products at all stages of glycation was studied by various assays. Spectroscopic analysis suggests structural perturbations in the HSA macromolecule as a result of modification, which might be due to the generation of free radicals and the formation of AGEs. Inhibition in the formation of glycation has established that quercetin is a better and a more potent antiglycating agent than aminoguanidine at all stages of glycation.

摘要

非酶糖基化是指还原糖的游离羰基与蛋白质的游离氨基相结合,从而导致早期和晚期糖基化终产物(AGEs)的形成。糖基化反应与糖尿病及其继发性并发症(如肾病和神经病变)密切相关。乙二醛是一种羰基化合物,它能与蛋白质的游离氨基迅速反应形成AGEs。虽然此前已经证明了各种糖基化剂可形成AGEs,但尚未开展广泛研究来评估槲皮素在糖基化的所有三个阶段(早期、中期和晚期)所起的作用。在本研究中,我们报告了人血清白蛋白(HSA)的糖基化过程及其通过几种光谱技术进行的表征。此外,还通过各种测定方法研究了槲皮素对糖基化所有阶段产物的抑制作用。光谱分析表明,修饰导致HSA大分子结构发生扰动,这可能是由于自由基的产生和AGEs的形成所致。对糖基化形成的抑制作用表明,在糖基化的所有阶段,槲皮素都是比氨基胍更好、更有效的抗糖基化剂。

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