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Aqueous Two-Phase Systems as a Robust Platform for Green Extraction of Bioactives in Plant-Based Products

delete2025-05-06
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PRE
AI
张晓华 cover
张晓华 (Xiaohua Zhang) *
M
Mingxuan Li
R
Renjun Liu *
聂瑾芳 (Jinfang Nie) *
唐课文 (Kewen Tang) *
DOI:10.1080/15422119.2025.2493849delete
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Abstract

Abstract

En 中文
Bioactive secondary metabolites (SMs) are potential lead compounds due to their remarkable pharmacological properties. However, extracting these SMs from plant-based samples is challenging and resource-intensive, often resulting in inaccurate outcomes due to the complexity of the samples. To tackle these challenges, aqueous two-phase systems (ATPSs) present a promising solution due to their high water content, structural flexibility, and exceptional selectivity. Recent advancements have further improved their performance through the integration of deep eutectic solvents, ionic liquids, carbohydrates, amino acids, or copolymers. This study provides a comprehensive review of the advancements in ATPSs for the extraction, isolation, and purification of bioactive plant SMs, focusing on their efficiency and alignment with green chemistry principles. By gathering data from plant material extraction studies, it highlights the complementary role of ATPSs, their advantages, and efficacy in extraction processes. This review also highlights key technological advancements and challenges in both laboratory research and industrial applications. These challenges encompass the recovery and recycling of phase-forming components, the development of innovative phase-forming chemicals, the integration of advanced technological solutions, and the scaling up to industrial production. The goal is to offer insights into the practicality and reliability of ATPSs for the recovery of bioactive SMs.
Keywords:
Secondary metabolites
aqueous two-phase system
SWOT analysis
pretreatment techniques
environmentally sustainable

Journal

Separation and Purification Reviews cover
Separation and Purification Reviews
IF:
5.6
Papers:
336
Citations:
1.6K

Organization

G
Guilin University of Technology
Scholars:
9.3K
Papers: 5.5K
Citations: 6.8K
H
hunan institute of science and technology
Scholars:
613
Papers: 169
Citations: 0
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