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Quantitative twoplex glycan analysis using 12 C 6 and 13 C 6 stable isotope 2-aminobenzoic acid labelling and capillary electrophoresis mass spectrometry.

Authors :
Váradi C
Mittermayr S
Millán-Martín S
Bones J
Source :
Analytical and bioanalytical chemistry [Anal Bioanal Chem] 2016 Dec; Vol. 408 (30), pp. 8691-8700. Date of Electronic Publication: 2016 Sep 23.
Publication Year :
2016

Abstract

Capillary electrophoresis (CE) offers excellent efficiency and orthogonality to liquid chromatographic (LC) separations for oligosaccharide structural analysis. Combination of CE with high resolution mass spectrometry (MS) for glycan analysis remains a challenging task due to the MS incompatibility of background electrolyte buffers and additives commonly used in offline CE separations. Here, a novel method is presented for the analysis of 2-aminobenzoic acid (2-AA) labelled glycans by capillary electrophoresis coupled to mass spectrometry (CE-MS). To ensure maximum resolution and excellent precision without the requirement for excessive analysis times, CE separation conditions including the concentration and pH of the background electrolyte, the effect of applied pressure on the capillary inlet and the capillary length were evaluated. Using readily available <superscript>12/13</superscript> C <subscript>6</subscript> stable isotopologues of 2-AA, the developed method can be applied for quantitative glycan profiling in a twoplex manner based on the generation of extracted ion electropherograms (EIE) for <superscript>12</superscript> C <subscript>6</subscript> 'light' and <superscript>13</superscript> C <subscript>6</subscript> 'heavy' 2-AA labelled glycan isotope clusters. The twoplex quantitative CE-MS glycan analysis platform is ideally suited for comparability assessment of biopharmaceuticals, such as monoclonal antibodies, for differential glycomic analysis of clinical material for potential biomarker discovery or for quantitative microheterogeneity analysis of different glycosylation sites within a glycoprotein. Additionally, due to the low injection volume requirements of CE, subsequent LC-MS analysis of the same sample can be performed facilitating the use of orthogonal separation techniques for structural elucidation or verification of quantitative performance.

Details

Language :
English
ISSN :
1618-2650
Volume :
408
Issue :
30
Database :
MEDLINE
Journal :
Analytical and bioanalytical chemistry
Publication Type :
Academic Journal
Accession number :
27662881
Full Text :
https://doi.org/10.1007/s00216-016-9935-8