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以酚氧化偶联为关键反应的二聚体羟基肉桂酸(木脂素)及其杂化物的仿生合成及其医学意义。

Bioinspired syntheses of dimeric hydroxycinnamic acids (lignans) and hybrids, using phenol oxidative coupling as key reaction, and medicinal significance thereof.

作者信息

Magoulas George E, Papaioannou Dionissios

机构信息

Department of Chemistry, University of Patras, Patras 26504, Greece.

出版信息

Molecules. 2014 Nov 28;19(12):19769-835. doi: 10.3390/molecules191219769.

Abstract

Lignans are mainly dimers of 4-hydroxycinnamic acids (HCAs) and reduced analogs thereof which are produced in Nature through phenol oxidative coupling (POC) as the primary C-C or C-O bond-forming reaction under the action of the enzymes peroxidases and laccases. They present a large structural variety and particularly interesting biological activities, therefore, significant efforts has been devoted to the development of efficient methodologies for the synthesis of lignans isolated from natural sources, analogs and hybrids with other biologically interesting small molecules. We summarize in the present review those methods which mimic Nature for the assembly of the most common lignan skeleta by using either enzymes or one-electron inorganic oxidants to effect POC of HCAs and derivatives, such as esters and amides, or cross-POC of pairs of HCAs or HCAs with 4-hydrocycinnamyl alcohols. We, furthermore, provide outlines of mechanistic schemes accounting for the formation of the coupled products and, where applicable, indicate their potential application in medicine.

摘要

木脂素主要是4-羟基肉桂酸(HCAs)及其还原类似物的二聚体,它们在自然界中通过酚氧化偶联(POC)产生,这是在过氧化物酶和漆酶的作用下主要的碳-碳或碳-氧键形成反应。它们具有多种多样的结构和特别有趣的生物活性,因此,人们致力于开发高效的方法来合成从天然来源分离的木脂素、类似物以及与其他具有生物活性的小分子的杂合体。在本综述中,我们总结了那些模仿自然的方法,通过使用酶或单电子无机氧化剂来实现HCAs及其衍生物(如酯和酰胺)的POC,或HCAs对之间或HCAs与4-氢环肉桂醇之间的交叉POC,从而组装最常见的木脂素骨架。此外,我们还提供了说明偶联产物形成的机理方案概述,并在适用的情况下指出它们在医学上的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dd7/6271182/682d35ec3eb5/molecules-19-19769-g020.jpg

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