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Fragmentation of sialylated carbohydrates using infrared atmospheric pressure MALDI ion trap mass spectrometry from cation-doped liquid matrixes

机译:使用红外大气压MALDI离子阱质谱法从阳离子掺杂的液体基质中裂解唾液酸化的碳水化合物

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Infrared atmospheric pressure matrix-assisted laser desorption/ionization on an ion trap mass spectrometer is used to study sialylated oligosaccharides desorbed from the liquid phase. Glycerol doped with various cations provides the opportunity to produce cation-adducted intact molecular ions of sugars. Distinct combinations of cations allow for sialic acid stabilization, as well as differential cleavage, resulting in more complete fragmentation coverage of the oligosaccharide. Alkali and transition metal cations are utilized to create three distinct molecular ion species, involving the adduction of a singly charged cation, two singly charged cations, or a doubly charged cation. From these different molecular ion types, complementary sequence, branching, and linkage information for sialylated oligosaccharides can be deduced. [References: 38]
机译:离子阱质谱仪上的红外大气压基质辅助激光解吸/电离用于研究从液相中解吸的唾液酸化寡糖。掺杂有各种阳离子的甘油提供了产生糖加成阳离子的完整分子离子的机会。阳离子的不同组合可实现唾液酸的稳定化,以及不同的裂解作用,从而使寡糖的片段化覆盖范围更加完整。利用碱金属离子和过渡金属阳离子来产生三种不同的分子离子,包括单电荷阳离子,两个单电荷阳离子或双电荷阳离子的加成。从这些不同的分子离子类型,可以推断出唾液酸化寡糖的互补序列,分支和连接信息。 [参考:38]

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