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定制溶剂用于微生物类胡萝卜素的回收。

Tailor-made solvents for microbial carotenoids recovery.

机构信息

Escuela de Agronomía, Facultad de Ciencias Agronómicas y de los Alimentos, Pontificia Universidad Católica de Valparaíso, 2260000, Quillota, Chile.

CIEPQPF, Department of Chemical Engineering, Faculty of Sciences and Technology, University of Coimbra, Rua Sílvio Lima, Pólo II-Pinhal de Marrocos, 3030-790, Coimbra, Portugal.

出版信息

Appl Microbiol Biotechnol. 2024 Feb 24;108(1):234. doi: 10.1007/s00253-024-13049-x.

Abstract

In recent years, microbial carotenoids have emerged as a promising alternative for the pharmaceutical and food industries, particularly in promoting human health due to their potent antioxidant and antimicrobial properties. Microbial carotenoids, particularly those produced by yeast, bacteria, and microalgae, are synthesized intracellularly, requiring the use of solvents for their effective extraction and recovery. The conventional use of toxic volatile organic solvents (VOCs) like hexane, petroleum ether, and dimethyl sulfoxide in the extraction of microbial carotenoids has been common. However, ongoing research is introducing innovative, non-toxic, environmentally friendly tailor-made solvents, such as ionic liquids (IL) and deep eutectic solvents (DES), indicating a new era of cleaner and biocompatible technologies. This review aims to highlight recent advancements in utilizing IL and DES for obtaining carotenoids from microorganisms. Additionally, we explore the utilization of in silico tools designed to determine the solubilities of microbial carotenoids in tailor-made DES and ILs. This presents a promising alternative for the scientific community, potentially reducing the need for extensive experimental screening of solvents for the recovery of microbial carotenoids in the separation processing. According to our expert perspective, both IL and DES exhibit a plethora of exceptional attributes for the recovery of microbial carotenoids. Nevertheless, the current employment of these solvents for recovery of carotenoids is restricted to scientific exploration, as their feasibility for practical application in industrial settings has yet to be conclusively demonstrated. KEY POINTS: • ILs and DES share many tailoring properties for the recovery of microbial carotenoids • The use of ILs and DES for microbial carotenoid extraction remains driven by scientific curiosity. • The economic feasibility of ILs and DES is yet to be demonstrated in industrial applications.

摘要

近年来,微生物类胡萝卜素作为医药和食品工业的一种有前途的替代品而出现,特别是由于其强大的抗氧化和抗菌特性,对促进人类健康具有重要作用。微生物类胡萝卜素,特别是由酵母、细菌和微藻产生的类胡萝卜素,是在细胞内合成的,需要使用溶剂才能有效地提取和回收。在提取微生物类胡萝卜素时,传统上使用有毒挥发性有机溶剂(VOCs),如正己烷、石油醚和二甲基亚砜。然而,正在进行的研究正在引入创新的、无毒的、环保的定制溶剂,如离子液体(IL)和深共晶溶剂(DES),这标志着清洁和生物相容技术的新时代。本综述旨在强调利用 IL 和 DES 从微生物中获得类胡萝卜素的最新进展。此外,我们还探讨了利用计算工具来确定微生物类胡萝卜素在定制 DES 和 IL 中的溶解度。这为科学界提供了一个有前途的替代方案,可能减少为从分离过程中回收微生物类胡萝卜素而对溶剂进行广泛实验筛选的需要。根据我们的专家观点,IL 和 DES 都表现出许多出色的特性,适用于回收微生物类胡萝卜素。然而,这些溶剂目前仅用于科学探索,因为它们在工业应用中回收类胡萝卜素的可行性尚未得到明确证明。要点:• ILs 和 DES 具有许多可用于回收微生物类胡萝卜素的定制特性。• 目前,使用 ILs 和 DES 提取微生物类胡萝卜素仍然是出于科学好奇心。• ILs 和 DES 在工业应用中的经济可行性仍有待证明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68a2/10894098/65f4c37f489c/253_2024_13049_Fig1_HTML.jpg

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