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1 ass spectrometer is used for the analysis of sialylated oligosaccharides.
2 enomegaly, kyphosis and urinary excretion of sialylated oligosaccharides.
3 hip with the molar ratios of the neutral and sialylated oligosaccharides.
4 ation of neutral, branched, fucosylated, and sialylated oligosaccharides.
5  and the method is applicable to neutral and sialylated oligosaccharide alditols.
6                              Because acidic, sialylated oligosaccharides are detected at only the low
7 onditions employed, both neutral and acidic (sialylated) oligosaccharides are protonated and therefor
8 -resolution insights into the recognition of sialylated oligosaccharides by a parasite surface protei
9 ence, branching, and linkage information for sialylated oligosaccharides can be deduced.
10  ion trap mass spectrometer is used to study sialylated oligosaccharides desorbed from the liquid pha
11                                              Sialylated oligosaccharide epitopes found on a variety o
12  present report, we extend our strategies to sialylated oligosaccharides for analysis of chain and bl
13 allowing the observation of both neutral and sialylated oligosaccharides in a single negative ion mod
14 substituted mannitol-terminating neutral and sialylated oligosaccharides isolated from brain glycopep
15                       Expression of alpha2,3-sialylated oligosaccharides on the cell surface was dimi
16 dies of various complexes between TgMIC1 and sialylated oligosaccharides provide high-resolution insi
17 alpha1-acid glycoprotein (AGP) as well as of sialylated oligosaccharide reference standards and found
18                                              Sialylated oligosaccharide structures were determined by
19 yses, we identified a novel interaction with sialylated oligosaccharides that resolves several prevai
20 ypes studied was inhibited preferentially by sialylated oligosaccharides that terminate with the disa
21 nce standards and found that for more highly sialylated oligosaccharides the loss is greater than the
22                                         When sialylated oligosaccharides were covalently coupled to h
23 certain conditions, noncovalent complexes of sialylated oligosaccharides were observed.
24 d in polysialylation of low molecular weight sialylated oligosaccharides, whereas the enzymes exhibit
25                     Desialylation of several sialylated oligosaccharides with different structures an

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