A Review of Background and Application of ATPSs in Protein and Enzyme Extraction

IF 1.4 4区 化学 Q4 CHEMISTRY, PHYSICAL Journal of Solution Chemistry Pub Date : 2024-05-06 DOI:10.1007/s10953-024-01380-w
Erfan Nouri, Gholam Khayati
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Abstract

This review article provides an overview of the fundamental background and application of aqueous two-phase systems (ATPSs) in protein and enzyme extraction. The types of ATPSs, including polymer/salt, polymer/polymer, alcohol/salt, surfactant-based, and ionic liquid-based ATPSs, are discussed, along with the unconventional ATPSs. Factors affecting partitioning in ATPSs, such as molecular weight and polymer concentration, pH, temperature, hydrophobicity, and affinity, are also examined. The article then focuses on the application of ATPSs in protein and enzyme extraction, including continuous processing and scaling-up. The future prospects, challenges, and limitations of ATPSs in this field are discussed, along with the challenges associated with their use in industry. The results section highlights the potential of citrate green salts as an alternative to sulfate and phosphate salts in salt-based ATPSs and the need for more research on using ionic liquids as an additive in ATPS types for protein and enzyme extraction. Overall, this review suggests combining cheap and environmentally friendly materials in ATPSs can be a practical solution for using ATPSs in the industry.

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ATPS 在蛋白质和酶提取中的背景和应用综述
这篇综述文章概述了水相两相体系(ATPS)的基本背景以及在蛋白质和酶萃取中的应用。文章讨论了 ATPS 的类型,包括聚合物/盐、聚合物/聚合物、醇/盐、表面活性剂和离子液体型 ATPS,以及非常规 ATPS。文章还探讨了影响 ATPS 中分配的因素,如分子量和聚合物浓度、pH 值、温度、疏水性和亲和性。然后,文章重点介绍了 ATPS 在蛋白质和酶提取中的应用,包括连续加工和放大。文章讨论了 ATPS 在这一领域的未来前景、挑战和局限性,以及在工业中使用 ATPS 所面临的挑战。结果部分强调了柠檬酸绿盐在盐基 ATPS 中替代硫酸盐和磷酸盐的潜力,以及将离子液体作为添加剂用于蛋白质和酶提取 ATPS 类型的更多研究需求。总之,本综述表明,在 ATPS 中结合廉价且环保的材料是在工业中使用 ATPS 的切实可行的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Solution Chemistry
Journal of Solution Chemistry 化学-物理化学
CiteScore
2.30
自引率
0.00%
发文量
87
审稿时长
3-8 weeks
期刊介绍: Journal of Solution Chemistry offers a forum for research on the physical chemistry of liquid solutions in such fields as physical chemistry, chemical physics, molecular biology, statistical mechanics, biochemistry, and biophysics. The emphasis is on papers in which the solvent plays a dominant rather than incidental role. Featured topics include experimental investigations of the dielectric, spectroscopic, thermodynamic, transport, or relaxation properties of both electrolytes and nonelectrolytes in liquid solutions.
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