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采用反相超高效液相色谱-离子淌度质谱联用技术对单聚乙二醇化和多聚乙二醇化胰岛素异构体进行表征。

Characterization of singly and multiply PEGylated insulin isomers by reversed-phase ultra-performance liquid chromatography interfaced with ion mobility mass spectrometry.

机构信息

Department of Chemistry, The University of Akron, Akron, OH 44325, USA.

Department of Chemistry, The University of Akron, Akron, OH 44325, USA.

出版信息

Anal Chim Acta. 2018 Apr 3;1004:58-66. doi: 10.1016/j.aca.2017.12.009. Epub 2017 Dec 28.

Abstract

Conjugation of poly(ethylene glycol) (PEG) to protein drugs (PEGylation) is increasingly utilized in the biotherapeutics field because it improves significantly the drugs' circulatory half-life, solubility, and shelf-life. The activity of a PEGylated drug depends on the number, size, and location of the attached PEG chain(s). This study introduces a 2D separation approach, including reversed-phase ultra-performance liquid chromatography (RP-UPLC) and ion mobility mass spectrometry (IM-MS), in order to determine the structural properties of the conjugates, as demonstrated for a PEGylated insulin sample that was prepared by random amine PEGylation. The UPLC dimension allowed separation based on polarity. Electrospray ionization (ESI) of the eluates followed by in-source dissociation (ISD) truncated the PEG chains and created insulin fragments that provided site-specific information based on whether they contained a marker at the potential conjugation sites. Separation of the latter fragments by size and charge in the orthogonal IM dimension (pseudo-4D UPLC-ISD-IM-MS approach) enabled clear detection and identification of the positional isomers formed upon PEGylation. The results showed a highly heterogeneous mixture of singly and multiply conjugated isomers plus unconjugated material. PEGylation was observed on all three possible attachment sites (ε-NH of LysB29, A- and B-chain N-termini). Each PEGylation site was validated by analysis of the same product after disulfide bond cleavage, so that the PEGylated A- and B- chain could be individually characterized with the same pseudo-4D UPLC-ISD-IM-MS method.

摘要

聚乙二醇(PEG)与蛋白药物的缀合(PEGylation)在生物治疗领域的应用越来越广泛,因为它能显著提高药物的循环半衰期、溶解度和保质期。PEG 化药物的活性取决于附着的 PEG 链的数量、大小和位置。本研究引入了一种二维分离方法,包括反相超高效液相色谱(RP-UPLC)和离子淌度质谱(IM-MS),以确定缀合物的结构特性,如通过随机胺 PEG 化制备的 PEG 化胰岛素样品所示。UPLC 维度允许基于极性进行分离。洗脱液的电喷雾电离(ESI)随后进行源内解离(ISD)截断了 PEG 链,并创建了胰岛素片段,这些片段根据它们是否在潜在的缀合位点含有标记物,提供了基于位置的信息。在正交 IM 维度(伪 4D UPLC-ISD-IM-MS 方法)中根据大小和电荷对这些片段进行分离,能够清晰地检测和鉴定 PEG 化形成的位置异构体。结果表明,形成了高度不均一的单缀合和多缀合异构体混合物,以及未缀合的物质。在所有三个可能的附着位点(LysB29 的 ε-NH、A-和 B-链 N-末端)都观察到了 PEGylation。在用二硫键断裂后分析相同的产物,对每个 PEGylation 位点进行了验证,因此可以使用相同的伪 4D UPLC-ISD-IM-MS 方法分别对 PEG 化的 A-和 B-链进行单独表征。

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