posted on 2019-07-31, 17:49authored byWanjun Jin, Chengjian Wang, Meifang Yang, Ming Wei, Linjuan Huang, Zhongfu Wang
Changes of α-2,3-/α-2,6-linked
sialic acids (SAs) in
sialylglycans have been found to be closely related with some diseases.
However, accurate quantification of sialylglycans at the isomeric
level remains challenging due to their instability, structural complexity,
and low mass spectrometry (MS) detection sensitivity. Herein, we propose
an analytical strategy named “glycoqueuing”, which allows
sequential chromatographic elution and high-sensitivity MS quantification
of various sialylglycan isomers based on isotopic labeling followed
by analysis via online reversed-phase high performance liquid chromatography
coupling with MS (RP-HPLC-MS). The new method was validated by detailed
structural identification and quantification of fetal bovine serum
(FBS) N-linked sialylglycan isomers, during which
many branching isomers were successfully differentiated, and 28 sialylglycan
compositions with Neu5Gc residues were analyzed. The method was successfully
applied to isomer-specific, quantitative comparison of sialylated N-glycans between bovine and rabbit immunoglobulin G (IgG)
and the search for serum sialylated N-glycan biomarker
candidates of hepatocellular carcinoma, during which a 55% increase
of α-2,6-sialylated fucosylated N-glycans was
revealed, demonstrating the great applicability and potential clinical
usage of the method.