Characterization of singly and multiply PEGylated insulin isomers by reversed-phase ultra-performance liquid chromatography interfaced with ion mobility mass spectrometry
Autor: | Chrys Wesdemiotis, Selim Gerislioglu, Scott R. Adams |
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Rok vydání: | 2018 |
Předmět: |
Spectrometry
Mass Electrospray Ionization Surface Properties Ion-mobility spectrometry Electrospray ionization 01 natural sciences Biochemistry High-performance liquid chromatography Polyethylene Glycols Analytical Chemistry chemistry.chemical_compound Isomerism PEG ratio Structural isomer Insulin Environmental Chemistry Particle Size Spectroscopy Chromatography Reverse-Phase Chromatography Molecular Structure 010405 organic chemistry 010401 analytical chemistry Reversed-phase chromatography 0104 chemical sciences chemistry PEGylation Ethylene glycol |
Zdroj: | Analytica Chimica Acta. 1004:58-66 |
ISSN: | 0003-2670 |
DOI: | 10.1016/j.aca.2017.12.009 |
Popis: | 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 (e-NH2 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. |
Databáze: | OpenAIRE |
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