Louros Cláudia L S, Cláudio Ana Filipa M, Neves Catarina M S S, Freire Mara G, Marrucho Isabel M, Pauly Jérôme, Coutinho João A P
Departamento de Química, CICECO, Universidade de Aveiro, Portugal.
Int J Mol Sci. 2010 Apr 15;11(4):1777-91. doi: 10.3390/ijms11041777.
Aqueous biphasic systems (ABS) provide an alternative and efficient approach for the extraction, recovery and purification of biomolecules through their partitioning between two liquid aqueous phases. In this work, the ability of hydrophilic phosphonium-based ionic liquids (ILs) to form ABS with aqueous K(3)PO(4) solutions was evaluated for the first time. Ternary phase diagrams, and respective tie-lines and tie-lines length, formed by distinct phosphonium-based ILs, water, and K(3)PO(4) at 298 K, were measured and are reported. The studied phosphonium-based ILs have shown to be more effective in promoting ABS compared to the imidazolium-based counterparts with similar anions. Moreover, the extractive capability of such systems was assessed for distinct biomolecules (including amino acids, food colourants and alkaloids). Densities and viscosities of both aqueous phases, at the mass fraction compositions used for the biomolecules extraction, were also determined. The evaluated IL-based ABS have been shown to be prospective extraction media, particularly for hydrophobic biomolecules, with several advantages over conventional polymer-inorganic salt ABS.
双水相体系(ABS)通过生物分子在两个液相水相之间的分配,为生物分子的提取、回收和纯化提供了一种替代且高效的方法。在本工作中,首次评估了亲水性鏻基离子液体(ILs)与K₃PO₄水溶液形成双水相体系的能力。测定并报告了在298 K下,由不同的鏻基离子液体、水和K₃PO₄形成的三元相图以及相应的系线和系线长度。研究表明,与具有相似阴离子的咪唑基离子液体相比,所研究的鏻基离子液体在促进形成双水相体系方面更有效。此外,评估了该体系对不同生物分子(包括氨基酸、食用色素和生物碱)的萃取能力。还测定了用于生物分子萃取的质量分数组成下两个水相的密度和粘度。已证明所评估的基于离子液体的双水相体系是有前景的萃取介质,特别是对于疏水性生物分子,与传统的聚合物 - 无机盐双水相体系相比具有若干优势。