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- W57883798 abstract "This chapter discusses the utilization of two recently developed techniques in mass spectrometry for N-glycan characterization. In contrast to the ballistic-ionization approaches utilized in desorption mass spectrometry, the current state-of-the-art technology employs direct liquid injection of the solvent and dissolved analytes using various techniques of aerosol formation. The unifying principles are (1) the spatial dispersion of the solvated analyte by generating an aerosol from the bulk liquid and (2) the subsequent desolvation, and hence isolation in the gas phase of single molecules of the analyte from the microscopic solvent/solute clusters. Three mass spectrometry (MS) ion sources are dependent on the principles of desolvation and aerosol formation; thermal spray-MS, electrospray ionization-MS (ESI-MS), and supercritical fluid/chemical ionization (SFCI-MS). Of the techniques currently available, ESI-MS and SFCI-MS probably represent the least energetic or the softest molecular ionization approach that also encompasses remarkable sensitivity. These two techniques can be used independently to characterize separate components of carbohydrate structure. ESI-MS, in a more non-evasive manner, can be used to profile glycan glycoform distribution from isolated glycopeptides, while SFCI-MS is most effective in characterizing the details of carbohydrate structure such as linkage, branching, and primary sequence. Using this latter approach, glycoproteins are first deglycosylated and labeled at the reducing-end, chemically modified, and derivatized." @default.
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- W57883798 date "1992-01-01" @default.
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- W57883798 title "GLYCOFORM, GLYCOTYPE LINKAGE AND BRANCHING DETAIL OF THE CD2 ADHESION DOMAIN BY DESOLVATION MASS SPECTROMETRY: SFCI-MS AND ESI-MS" @default.
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- W57883798 doi "https://doi.org/10.1016/b978-0-12-058756-8.50034-1" @default.
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