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Thermo-separating polymer-based aqueous two-phase systems for the recovery of PEGylated lysozyme species

机译:热分离聚合物基水性两相系统,用于回收聚乙二醇化溶菌酶物种

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摘要

Fractionation of native, mono and di-PEGylated lysozyme was performed in 36 different polymer-polymer aqueous two-phase systems using UCON as a phase-forming component. After a discrete partition analysis, dextran 75 kDa-UCON, volume ratio 3, tie-line length 35% w/w; ficoll 70 kDa-UCON, volume ratio 1, tie-line length 45% w/w and a PEG 8 kDa-UCON volume ratio 3, tie-line length 65% w/w systems were selected for optimization via salt addition and to observe the behavior of the lysozyme species in mixtures. The dextran-UCON and the PEG-UCON systems with 75 mM NaCl showed effectiveness in separating 75% and 87% of mono-PEGylated lysozyme from the rest of the lysozyme species in the top and bottom phases, respectively. These results are an advancement in incorporating these extractions in different processes since the use of UCON simplifies the removal of the polymers, providing the opportunity of recycling it to the operation.
机译:使用UCON作为相成分组分,在36种不同的聚合物 - 聚合物含水两相体系中进行天然,单戊糖和二聚乙二醇化溶菌酶的分馏。 在离散分区分析后,葡聚糖75 kda-ucon,体积比3,系列长度35%w / w; Ficoll 70 KDA-UCON,体积比1,系列长度45%W / W和PEG 8 KDA-UCON体积比3,选择扎线长度65%W / W系统通过盐添加并观察 混合物中溶菌酶种类的行为。 具有75mM NaCl的葡聚糖-UCON和PEG-UCON系统在顶部和底部分别分别将75%和87%的单溶酵素物种分离75%和87%的单乙二醇化溶菌酶。 这些结果是在不同方法中掺入这些提取的进步,因为使用UCON简化了聚合物的去除,提供了将其循环到操作的机会。

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