Aqueous Two-Phase Systems - versatile and advanced (bio)process engineering tools

IF 4.3 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Chemical Communications Pub Date : 2024-09-23 DOI:10.1039/d4cc02663b
Alexandre M. S. Jorge, Jorge F B Pereira
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Abstract

Aqueous Two-Phase Systems (ATPS), also known as Aqueous Biphasic Systems (ABS), have been extensively studied as platforms for the separation and purification of biomolecules and other valuable compounds. These liquid-liquid extraction (LLE) systems have been a tool for biotechnology since its origin (Albertsson, 1950’s), recently expanding to exciting fields such as health, biomedicine and material sciences. Due to their biocompatibility, amenability, flexibility, and versatility, ATPS have been applied across various research areas, addressing many challenges associated with conventional methodologies. In this feature article, we first discuss the fundamentals of ATPS and the molecular mechanisms that govern their formation and are crucial for their application. We then explore the most prominent and innovative applications of these systems in downstream processing. Additionally, we provide insights into the design of in situ upstream-downstream integrated platforms, and their use as pre-treatment and analytical tools. The latest advancements in ATPS applications within disruptive bioengineering and biotechnology fields are presented, along with their pioneering use in emerging scientific areas, such as the formation of all-aqueous (water-in-water) emulsions, microfluidic systems, and membrane-free batteries. Overall, this underscores the transformative potential of ATPS in various branches of science, pinpointing directions for future research to fully explore and maximize ATPS capabilities, overcome existing hurdles, and drive innovation forward.
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水基两相系统--多功能的先进(生物)工艺工程工具
水相两相萃取系统(ATPS),又称水相双相萃取系统(ABS),作为分离和纯化生物大分子及其他有价值化合物的平台,已经得到了广泛的研究。这些液液萃取(LLE)系统自诞生以来一直是生物技术的工具(Albertsson,20 世纪 50 年代),最近又扩展到健康、生物医学和材料科学等令人兴奋的领域。ATPS 具有生物相容性、适应性、灵活性和多功能性,已被应用于各个研究领域,解决了与传统方法相关的许多难题。在这篇特写文章中,我们首先讨论 ATPS 的基本原理及其形成的分子机制,这对其应用至关重要。然后,我们探讨了这些系统在下游加工中最突出的创新应用。此外,我们还深入探讨了原位上下游集成平台的设计及其作为预处理和分析工具的应用。我们介绍了 ATPS 在颠覆性生物工程和生物技术领域应用的最新进展,以及它们在新兴科学领域的开创性应用,如全水性(水包水)乳液的形成、微流控系统和无膜电池。总之,这强调了 ATPS 在各个科学分支中的变革潜力,为未来研究指明了方向,以充分探索和最大限度地发挥 ATPS 的能力,克服现有障碍,推动创新向前发展。
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
Chemical Communications
Chemical Communications 化学-化学综合
CiteScore
8.60
自引率
4.10%
发文量
2705
审稿时长
1.4 months
期刊介绍: ChemComm (Chemical Communications) is renowned as the fastest publisher of articles providing information on new avenues of research, drawn from all the world''s major areas of chemical research.
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