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Deep eutectic solvents as novel extraction media for protein partitioning

机译:深共熔溶剂作为蛋白质分配的新型提取介质

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摘要

Four kinds of green deep eutectic solvent (DES) were synthesized, including choline chloride (ChCl)–urea, tetramethylammonium chloride (TMACl)–urea, tetrapropylammonium bromide (TPMBr)–urea and ChCl–methylurea. An aqueous two-phase system (ATPS) based ChCl–urea DES was studied for the first time for the extraction of bovine serum albumin (BSA). Single factor experiments proved that the extraction efficiency of BSA was influenced by the mass of the DES, concentration of KHPO solution, separation time and extraction temperature. The optimum conditions were determined through an orthogonal experiment with the four factors described above. The results showed that under the optimum conditions, the average extraction efficiency could reach up to 99.94%, 99.72%, 100.05% and 100.05% (each measured three times). The relative standard deviations (RSD) of extraction efficiencies in precision, repeatability and stability experiments were 0.5533% (n = 5), 0.8306% (n = 5) and 0.9829% (n = 5), respectively. UV-vis and FT-IR spectra confirmed that there were no chemical interactions between BSA and the DES in the extraction process, and the CD spectra proved that the conformation of BSA did not change after extraction. The conductivity, DLS and TEM were combined to investigate the microstructure of the top phase and the possible mechanism for the extraction. The results showed that hydrophobic interactions, hydrogen bonding interactions and the salting-out effect played important roles in the transfer process, and the aggregation and surrounding phenomenon were the main driving forces for the separation. All of these results proved that ionic liquid (IL)-based ATPSs could potentially be substituted with DES-based ATPSs to offer new possibilities in the extraction of proteins.
机译:合成了四种绿色的深共晶溶剂(DES),包括氯化胆碱(ChCl)–尿素,氯化四甲基铵(TMACl)–尿素,溴化四丙基铵(TPMBr)–尿素和ChCl–甲基脲。首次研究了基于水两相系统(ATPS)的ChCl–尿素DES提取牛血清白蛋白(BSA)。单因素实验证明,牛血清白蛋白的提取效率受DES质量,KHPO溶液浓度,分离时间和提取温度的影响。最佳条件是通过上述四个因素的正交试验确定的。结果表明,在最佳条件下,平均提取效率可以达到99.94%,99.72%,100.05%和100.05%(均进行了3次测量)。精密度,重复性和稳定性实验中提取效率的相对标准偏差(RSD)为0.5533%( n = 5),0.8306%( n = 5)和0.9829% ( n = 5)。 UV-vis和FT-IR光谱证实了萃取过程中BSA与DES之间没有化学相互作用,而CD光谱证明萃取后BSA的构象没有变化。结合电导率,DLS和TEM研究了顶相的微观结构以及萃取的可能机理。结果表明,疏水作用,氢键作用和盐析作用在转移过程中起着重要作用,聚集和周围现象是分离的主要驱动力。所有这些结果证明,基于离子液体(IL)的ATPS可能被基于DES的ATPS取代,从而为蛋白质提取提供了新的可能性。

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