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深共熔溶剂在蛋白质提取与纯化中的应用

Application of deep eutectic solvents in protein extraction and purification.

作者信息

Bowen Hou, Durrani Rabia, Delavault André, Durand Erwann, Chenyu Jiang, Yiyang Long, Lili Song, Jian Song, Weiwei Huan, Fei Gao

机构信息

Zhejiang Provincial Key Laboratory of Resources Protection and Innovation of Traditional Chinese Medicine, Zhejiang A & F University, Hangzhou, China.

State Key Laboratory of Subtropical Silviculture, Zhejiang A & F University, Lin'an, Zhejiang, China.

出版信息

Front Chem. 2022 Sep 6;10:912411. doi: 10.3389/fchem.2022.912411. eCollection 2022.

Abstract

Deep eutectic solvents (DESs) are a mixture of hydrogen bond donor (HBD) and hydrogen bond acceptor (HBA) molecules that can consist, respectively, of natural plant metabolites such as sugars, carboxylic acids, amino acids, and ionic molecules, which are for the vast majority ammonium salts. Media such as DESs are modular tools of sustainability that can be pointed toward the extraction of bioactive molecules due to their excellent physicochemical properties, their relatively low price, and accessibility. The present review focuses on the application of DESs for protein extraction and purification. The in-depth effects and principles that apply to DES-mediated extraction using various renewable biomasses will be discussed as well. One of the most important observations being made is that DESs have a clear ability to maintain the biological and/or functional activity of the extracted proteins, as well as increase their stability compared to traditional solvents. They demonstrate true potential for a reproducible but more importantly, scalable protein extraction and purification compared to traditional methods while enabling waste valorization in some particular cases.

摘要

深共熔溶剂(DESs)是氢键供体(HBD)和氢键受体(HBA)分子的混合物,它们分别可以由天然植物代谢产物组成,如糖、羧酸、氨基酸,以及离子分子,其中绝大多数是铵盐。像DESs这样的介质是可持续性的模块化工具,由于其优异的物理化学性质、相对较低的价格和可获取性,可用于生物活性分子的提取。本综述重点关注DESs在蛋白质提取和纯化中的应用。还将讨论使用各种可再生生物质进行DES介导提取所适用的深入影响和原理。其中一个最重要的发现是,与传统溶剂相比,DESs具有明显的能力来维持提取蛋白质的生物学和/或功能活性,并提高其稳定性。与传统方法相比,它们在可重复但更重要的是可扩展的蛋白质提取和纯化方面展现出真正的潜力,同时在某些特定情况下能够实现废物资源化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcc5/9485462/106a1583a40b/fchem-10-912411-g001.jpg

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