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深共晶溶剂作为从天然资源中提取多糖的可持续提取介质:现状、挑战和展望。

Deep eutectic solvents as sustainable extraction media for extraction of polysaccharides from natural sources: Status, challenges and prospects.

机构信息

Department of Toxicology, Advanced Medical and Dental Institute (AMDI), Universiti Sains Malaysia, 13200, Bertam Kepala Batas, Penang, Malaysia.

School of Chemistry and Environment, Faculty of Applied Sciences, Universiti Teknologi MARA, Cawangan Negeri Sembilan, Kampus Kuala Pilah, 72000, Kuala Pilah, Negeri Sembilan, Malaysia.

出版信息

Carbohydr Polym. 2024 Aug 15;338:122199. doi: 10.1016/j.carbpol.2024.122199. Epub 2024 Apr 26.

Abstract

Deep eutectic solvents (DES) emerge as promising alternatives to conventional solvents, offering outstanding extraction capabilities, low toxicity, eco-friendliness, straightforward synthesis procedures, broad applicability, and impressive recyclability. DES are synthesized by combining two or more components through various synthesis procedures, such as heat-assisted mixing/stirring, grinding, freeze drying, and evaporation. Polysaccharides, as abundant natural materials, are highly valued for their biocompatibility, biodegradability, and sustainability. These versatile biopolymers can be derived from various natural sources such as plants, algae, animals, or microorganisms using diverse extraction techniques. This review explores the synthesis procedures of DES, their physicochemical properties, characterization analysis, and their application in polysaccharide extraction. The extraction optimization strategies, parameters affecting DES-based polysaccharide extraction, and separation mechanisms are comprehensively discussed. Additionally, this review provides insights into recently developed molecular guides for DES screening and the utilization of artificial neural networks for optimizing DES-based extraction processes. DES serve as excellent extraction media for polysaccharides from different sources, preserving their functional features. They are utilized both as extraction solvents and as supporting media to enhance the extraction abilities of other solvents. Continued research aims to improve DES-based extraction methods and achieve selective, energy-efficient processes to meet the demands of this expanding field.

摘要

深共熔溶剂 (DES) 作为传统溶剂的替代品脱颖而出,具有出色的提取能力、低毒性、环保性、简单的合成工艺、广泛的适用性和令人印象深刻的可回收性。DES 通过多种合成工艺,如热辅助混合/搅拌、研磨、冷冻干燥和蒸发,将两种或多种成分组合合成。多糖作为丰富的天然材料,因其生物相容性、生物降解性和可持续性而备受重视。这些多功能生物聚合物可以使用各种提取技术从植物、藻类、动物或微生物等各种天然来源中提取。本综述探讨了 DES 的合成工艺、物理化学性质、表征分析以及在多糖提取中的应用。全面讨论了多糖提取的优化策略、影响 DES 基多糖提取的参数以及分离机制。此外,本综述还介绍了用于 DES 筛选的最新分子指南以及用于优化 DES 基提取过程的人工神经网络的利用。DES 是从不同来源提取多糖的优良萃取介质,保留其功能特性。它们既可用作萃取溶剂,也可用作支持介质,以增强其他溶剂的萃取能力。持续的研究旨在改进基于 DES 的提取方法,并实现选择性、节能的工艺,以满足这一不断发展领域的需求。

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