Katano Hajime, Maruyama Mami, Uematsu Kohei, Maruyama Chitose, Hamano Yoshimitsu
Department of Bioscience and Biotechnology, Fukui Prefectural University, Eiheiji, Fukui, 910-1195, Japan.
Anal Sci. 2024 Jan;40(1):47-52. doi: 10.1007/s44211-023-00428-z. Epub 2023 Oct 9.
This paper describes the availability of a 1,2-dichloroethane (DCE)-water (W) interfacial system under a controlled interfacial potential difference for the separation of polycationic species. The system was applied to the production of polyethylene glycol-modified ε-poly-L-lysine (PEG-εPL). PEG-εPL is produced by a fermentation process, and the crude product contains a significant amount of non-modified εPL, which is hardly separated by conventional chromatographic techniques. Both εPL species exist in fully protonated forms under certain acidic conditions, and an extractant, dibenzo-18-crown-6 (DB18C6), associates with their ammonium groups to stabilize the polycations in DCE. Despite the polydispersity of the samples, the εPL and crude PEG-εPL give well-defined cyclic voltammetric waves due to the DB18C6-assisted transfer of the polycations at the polarizable DB18C6 (DCE) | (W, pH ~ 3) interface with midpoint potentials useful for a rough prediction of ion partition equilibria. Thus, the partition experiment was performed using the DB18C6, BuN[(CFSO)N] (DCE) | crude PEG-εPL, Li[(CFSO)N] (W, pH ~ 3) interfacial system, of which the potential difference was controlled to enable selective extraction of polycationic PEG-εPL by partition of the [(CFSO)N] ion. The extract could be collected from the DCE phase and was found to consist of highly purified PEG-εPL.
本文描述了在可控界面电位差下用于分离聚阳离子物种的1,2 - 二氯乙烷(DCE)-水(W)界面体系的可用性。该体系应用于聚乙二醇修饰的ε-聚-L-赖氨酸(PEG-εPL)的制备。PEG-εPL通过发酵过程生产,粗产物中含有大量未修饰的εPL,用传统色谱技术很难分离。在特定酸性条件下,两种εPL物种均以完全质子化形式存在,萃取剂二苯并-18-冠-6(DB18C6)与它们的铵基团结合,以稳定DCE中的聚阳离子。尽管样品存在多分散性,但由于DB18C6辅助聚阳离子在可极化的DB18C6(DCE)|(W,pH约为3)界面处转移,εPL和粗PEG-εPL给出了明确的循环伏安波,其中点电位有助于粗略预测离子分配平衡。因此,使用DB18C6,BuN[(CFSO)N](DCE)|粗PEG-εPL,Li[(CFSO)N](W,pH约为3)界面体系进行分配实验,控制其电位差,通过[(CFSO)N]离子的分配选择性萃取聚阳离子PEG-εPL。萃取物可从DCE相中收集,发现其由高度纯化的PEG-εPL组成。