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场解吸和二次离子质谱法在糖脂分析中的应用。

Application of field desorption and secondary ion mass spectrometry for glycolipid analysis.

作者信息

Handa S, Kushi Y

出版信息

Adv Exp Med Biol. 1984;174:65-73. doi: 10.1007/978-1-4684-1200-0_6.

Abstract

Field desorption (FD) and secondary ion mass spectrometry (SI-MS) mass spectra of several glycolipids are presented to demonstrate their potential for the analysis of glycolipids. FD and SI-MS give useful information on molecular weight, ceramide structure and sugar sequence. In general, FD provides clearer fragment ion peaks for the analysis of sugar sequence than SI-MS. For underivatized acidic glycolipids such as gangliosides, sulfatide and seminolipid, SI-MS provides quasimolecular ions which are hardly produced by FD. In contrast to underivatized gangliosides, permethylated samples give molecular ion species of high intensity in both FD and SI-MS, but no fragment ions pertinent to carbohydrate sequence could be observed in FD spectra. SI-MS spectra of permethylated samples provide good information on sugar chain structure. Thus FD and SI-MS mass spectra complement each other, and the combination of these ionization methods will provide powerful tools for glycolipid analysis.

摘要

给出了几种糖脂的场解吸(FD)和二次离子质谱(SI-MS)质谱图,以证明它们在糖脂分析中的潜力。FD和SI-MS能提供有关分子量、神经酰胺结构和糖序列的有用信息。一般来说,FD比SI-MS能提供更清晰的碎片离子峰用于糖序列分析。对于未衍生化的酸性糖脂,如神经节苷脂、硫脂和半乳糖脑苷脂,SI-MS能提供FD几乎无法产生的准分子离子。与未衍生化的神经节苷脂不同,全甲基化样品在FD和SI-MS中都能给出高强度的分子离子物种,但在FD谱图中未观察到与碳水化合物序列相关的碎片离子。全甲基化样品的SI-MS谱图能提供有关糖链结构的良好信息。因此,FD和SI-MS质谱图相互补充,这两种电离方法的结合将为糖脂分析提供强大的工具。

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