Improved liquid chromatography-MS/MS of heparan sulfate oligosaccharides via chip-based pulsed makeup flow.

Anal Chem

Center for Biomedical Mass Spectrometry, Department of Biochemistry, Boston University School of Medicine, Boston, Massachusetts 02118, United States.

Published: November 2011

AI Article Synopsis

  • Microfluidic chip-based hydrophilic interaction chromatography (HILIC) enhances liquid chromatography-mass spectrometry (LC-MS) for analyzing heparan sulfate oligosaccharides, but low ion charge leads to loss of sulfate groups during tandem MS.
  • Adding metal cations or sulfolane can stabilize sulfate groups; sulfolane, known for supercharging proteins, was tested in a pulsed makeup flow HPLC-chip system that controls additive application timing.
  • Results indicated that using sulfolane significantly boosted the signal strength of oligosaccharide ions and reduced sulfate loss during tandem MS, leading to more abundant product ions from backbone cleavages.

Article Abstract

Microfluidic chip-based hydrophilic interaction chromatography (HILIC) is a useful separation system for liquid chromatography-mass spectrometry (LC-MS) in compositional profiling of heparan sulfate (HS) oligosaccharides; however, ions observed using HILIC LC-MS are low in charge. Tandem MS of HS oligosaccharide ions with low charge results in undesirable losses of SO(3) from precursor ions during collision induced dissociation. One solution is to add metal cations to stabilize sulfate groups. Another is to add a nonvolatile, polar compound such as sulfolane, a molecule known to supercharge proteins, to produce a similar effect for oligosaccharides. We demonstrate use of a novel pulsed makeup flow (MUF) HPLC-chip. The chip enables controlled application of additives during specified chromatographic time windows and thus minimizes the extent to which nonvolatile additives build up in the ion source. The pulsed MUF system was applied to LC-MS/MS of HS oligosaccharides. Metal cations and sulfolane were tested as additives. The most promising results were obtained for sulfolane, for which supercharging of the oligosaccharide ions increased their signal strengths relative to controls. Tandem MS of these supercharged precursor ions showed decreased abundances of product ions from sulfate losses yet more abundant product ions from backbone cleavages.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3205275PMC
http://dx.doi.org/10.1021/ac201964nDOI Listing

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