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黄酮类化合物的微生物和酶促转化

Microbial and enzymatic transformations of flavonoids.

作者信息

Das Shuvendu, Rosazza John P N

机构信息

Center for Biocatalysis and Bioprocessing, Oakdale Research Park, University of Iowa, Iowa City, 52242-5000, USA.

出版信息

J Nat Prod. 2006 Mar;69(3):499-508. doi: 10.1021/np0504659.

Abstract

Flavonoids are among the most ubiquitous phenolic compounds found in nature. These compounds have diverse physiological and pharmacological activities such as estrogenic, antitumor, antimicrobial, antiallergic, and anti-inflammatory effects. They are well-known antioxidants and metal ion-chelators. In the present review, biotransformations of numerous flavonoids catalyzed mainly by microbes and few plant enzymes are described in four different flavonoid classes, viz., chalcones, isoflavones, catechins, and flavones. Both phase I (oxidative) and phase II (conjugative) biotransformations representing a variety of reactions including condensation, cyclization, hydroxylation, dehydroxylation, alkylation, O-dealkylation, halogenation, dehydrogenation, double-bond reduction, carbonyl reduction, glycosylation, sulfation, dimerization, or different types of ring degradations are elaborated here. In some cases, the observed microbial transformations mimic mammalian and/or plant metabolism. This review recognizes Norman Farnsworth, who through his fascination and hard work in pharmacognosy has fostered the excitement of discovery by numerous students and faculty far and beyond the halls of the University of Illinois at Chicago. It is with grateful thanks for these efforts that we dedicate this review to him.

摘要

黄酮类化合物是自然界中最普遍存在的酚类化合物之一。这些化合物具有多种生理和药理活性,如雌激素样、抗肿瘤、抗菌、抗过敏和抗炎作用。它们是著名的抗氧化剂和金属离子螯合剂。在本综述中,主要由微生物和少数植物酶催化的多种黄酮类化合物的生物转化在四种不同的黄酮类化合物类别中进行了描述,即查耳酮、异黄酮、儿茶素和黄酮。这里详细阐述了代表各种反应的I相(氧化)和II相(结合)生物转化,包括缩合、环化、羟基化、脱羟基化、烷基化、O-脱烷基化、卤化、脱氢、双键还原、羰基还原、糖基化、硫酸化、二聚化或不同类型的环降解。在某些情况下,观察到的微生物转化模拟了哺乳动物和/或植物的代谢。本综述向诺曼·法恩斯沃思致敬,他通过对生药学的热爱和努力,激发了众多学生和教师的探索热情,其影响远远超出了芝加哥伊利诺伊大学的校园。怀着对这些努力的感激之情,我们将本综述献给他。

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