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儿茶素聚合绿色工艺的研究。

Investigation of a green process for the polymerization of catechin.

作者信息

Ezgi Ünlü Ayşe, Prasad Brinda, Anavekar Kishan, Bubenheim Paul, Liese Andreas

机构信息

a Institute of Technical Biocatalysis , Hamburg University of Technology , Hamburg , Germany.

b Department of Chemical Engineering, Faculty of Engineering , Ankara University , Ankara , Turkey.

出版信息

Prep Biochem Biotechnol. 2017 Oct 21;47(9):918-924. doi: 10.1080/10826068.2017.1365241. Epub 2017 Aug 17.

Abstract

Flavonoids are polyphenolic secondary plant metabolites which possess antioxidant and anti-inflammatory properties. Besides, they have been shown to exhibit increased antioxidant properties in their polymerized form. Catechins are one of the attractive class of flavonoids which belong to the group of flavan-3-ols. Polymerization of catechins have been investigated in numerous studies indicating the requirement of certain amount of organic solvent to provide the solubility of the monomer. However, many research projects have been conducted recently to replace toxic organic contaminants of the processes with environmentally friendly solvents. In this aspect, deep eutectic solvents (DESs) that are regarded as "green solvents" have been studied extensively in various enzyme catalyzed reactions. In the present study, we focused on establishing a green pathway for laccase catalyzed polycatechin synthesis by replacing organic solvent content with DESs as green solvents. For this aim, various parameters were investigated, such as DES types and concentrations laccase amount and reaction time. Consequently, the highest molecular weight polycatechin was obtained using 5% (v/v) B-M, 125 U laccase in 1 hr of reaction time, at 30°C, as 4,354 ± 678 g mol. Corresponding X/XO inhibitory activity and superoxide radical scavenging activities were achieved as, 59 and 50%, respectively.

摘要

黄酮类化合物是具有抗氧化和抗炎特性的多酚类次生植物代谢产物。此外,已证明它们以聚合形式表现出增强的抗氧化特性。儿茶素是一类有吸引力的黄酮类化合物,属于黄烷-3-醇类。众多研究对儿茶素的聚合进行了调查,表明需要一定量的有机溶剂来提供单体的溶解度。然而,最近开展了许多研究项目,用环境友好型溶剂替代工艺中的有毒有机污染物。在这方面,被视为“绿色溶剂”的深共熔溶剂(DESs)已在各种酶催化反应中得到广泛研究。在本研究中,我们专注于通过用DESs作为绿色溶剂替代有机溶剂含量,建立漆酶催化合成聚儿茶素的绿色途径。为此,研究了各种参数,如DES类型和浓度、漆酶用量和反应时间。结果,在30°C下反应1小时,使用5%(v/v)的B-M、125 U漆酶,得到了分子量最高的聚儿茶素,为4354±678 g/mol。相应的X/XO抑制活性和超氧自由基清除活性分别达到59%和50%。

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