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3-Aminoquinoline Acting as Matrix and Derivatizing Agent for MALDI MS Analysis of Oligosaccharides

机译:3-氨基喹啉作为基质和衍生剂用于寡糖的MALDI MS分析

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摘要

Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) is a widely used method in oligosaccharide analysis. Underivatized oligosaccharides are not well-suited for that purpose due to their low ionization efficiency; however, derivatization requires tedious sample purification steps which may lead to sample losses, thereby decreasing its benefit. On-target derivatization performed by the matrix 3-aminoquinoline does not require such purification and yields Schiff bases which can be measured in positive and negative ion mode from one single spot. In negative ion mode, spectra from anionic adducts of the derivatives can be acquired from 1 fmol of oligosaccharide. Furthermore, postsource decay (PSD) fragmentation in positive and negative ion mode is enhanced, providing information on oligosaccharide sequence, linkage, and branching. Optimization of reaction conditions and matrix solution led to a complete and reproducible derivatization for all tested standard oligosaccharides. Finally, the method was applied to trifucosyllacto-N-hexaose and trifucosyl-para-lacto-N-hexaose, two isomers occurring in human breast milk samples, which were easily identified and distinguished.
机译:基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)是寡糖分析中广泛使用的方法。未衍生化的寡糖由于其低电离效率而不适用于该目的。然而,衍生化需要繁琐的样品纯化步骤,这可能导致样品损失,从而降低其益处。由基质3-氨基喹啉进行的目标上衍生反应不需要这种纯化,可以产生席夫碱,可以从一个单一点以正离子和负离子模式对其进行测量。在负离子模式下,可以从1 fmol的寡糖获得衍生物的阴离子加合物的光谱。此外,正离子和负离子模式下的后源衰变(PSD)片段得到增强,从而提供了有关寡糖序列,连接和分支的信息。反应条件和基质溶液的优化导致对所有测试的标准寡糖进行完全且可重现的衍生化。最后,将该方法应用于人乳样品中出现的两个岩藻糖基内酯-N-己糖和岩藻糖基-对内酯基-N-己糖,这两种异构体易于识别和区分。

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