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Methylation of flavonoids: Chemical structures, bioactivities, progress and perspectives for biotechnological production

机译:黄酮类化合物的甲基化:化学结构,生物活性,生物技术生产的进展和前景

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Among the natural products, flavonoids have been particularly attractive, highly studied and become one of the most important promising agent to treat cancer, oxidant stress, pathogenic bacteria, inflammations, cardio-vascular dysfunctions, etc. Despite many promising roles of flavonoids, expectations have not been fulfilled when studies were extended to the in vivo condition, particularly in humans. Instability and very low oral bioavailability of dietary flavonoids are the reasons behind this. Researches have demonstrated that the methylation of these flavonoids could increase their promise as pharmaceutical agents leading to novel applications. Methylation of the flavonoids via theirs free hydroxyl groups or C atom dramatically increases their metabolic stability and enhances the membrane transport, leading to facilitated absorption and highly increased oral bioavailability. In this paper, we concentrated on analysis of flavonoid methoxides including O- and C-methoxide derivatives in aspect of structure, bioactivities and description of almost all up-to-date O- and C-methyltransferases' enzymatic characteristics. Furthermore, modern biological approaches for synthesis and production of flavonoid methoxides using metabolic engineering and synthetic biology have been focused and updated up to 2015. This review will give a handful information regarding the methylation of flavonoids, methyltransferases and biotechnological synthesis of the same. (C) 2016 Elsevier Inc. All rights reserved.
机译:在天然产物中,类黄酮尤其引人注目,经过高度研究,已成为治疗癌症,氧化应激,致病菌,炎症,心血管功能障碍等的最重要的有前途的药物之一。当研究扩展到体内条件时,尤其是在人类中,还没有实现。饮食类黄酮的不稳定性和口服生物利用度很低是其背后的原因。研究表明,这些类黄酮的甲基化可以增加其作为药物的希望,从而带来新的应用。黄酮类化合物通过其游离羟基或C原子甲基化可显着提高其代谢稳定性并增强膜运输,从而促进吸收并大大提高口服生物利用度。在本文中,我们集中于分析包括O-和C-甲醇盐衍生物的类黄酮甲醇盐的结构,生物活性以及几乎所有最新的O-和C-甲基转移酶的酶学特性描述。此外,使用代谢工程和合成生物学合成和生产类黄酮甲醇的现代生物学方法已得到重点关注并更新至2015年。本综述将提供有关类黄酮的甲基化,甲基转移酶及其生物技术合成的少量信息。 (C)2016 Elsevier Inc.保留所有权利。

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