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Aqueous two-phase systems. A general overview.

机译:两相水系统。概述。

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摘要

Biphasic systems formed by mixing of two polymers or a polymer and a salt in water can be used for separation of cells, membranes, viruses, proteins, nucleic acids, and other biomolecules. The partitioning between the two phases is dependent on the surface properties and conformation of the materials, and also on the composition of the two-phase system. The mechanism of partitioning is, however, complex and not easily predicted. Aqueous two-phase systems (ATPS) have proven to be a useful tool for analysis of biomolecular and cellular surfaces and their interactions, fractionation of cell populations; product recovery in biotechnology, and so forth. Potential for environmental remediation has also been suggested. Because ATPS are easily scalable and are also able to hold high biomass load in comparison with other separation techniques, the application that has attracted most interest so far has been the large-scale recovery of proteins from crude feedstocks. As chemicals constitute the major cost factor for large-scale systems, use of easily recyclable phase components and the phase systems generated by a single-phase chemical in water are being studied.
机译:通过将两种聚合物或一种聚合物和一种盐在水中混合而形成的双相体系可用于分离细胞,膜,病毒,蛋白质,核酸和其他生物分子。两相之间的分配取决于材料的表面性质和构象,还取决于两相体系的组成。然而,划分的机制很复杂并且不容易预测。两相水相系统(ATPS)已被证明是分析生物分子和细胞表面及其相互作用,细胞群体分离的有用工具;生物技术中的产品回收等。还提出了环境修复的潜力。与其他分离技术相比,由于ATPS易于扩展,并且还能够承受较高的生物量负荷,因此迄今为止,引起人们最大兴趣的应用是从原油原料中大规模回收蛋白质。由于化学品是大规模系统的主要成本因素,因此正在研究使用易于回收的相组分以及水中单相化学品产生的相系统。

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