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In-depth sphingomyelin characterization using electron impact excitation of ions from organics and mass spectrometry

机译:使用电子碰撞激发离子和质谱对电子鞘磷脂进行深入表征

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摘要

Electron impact excitation of ions from organics (EIEIO), also referred to as electron-induced dissociation, was applied to singly charged SM molecular species in the gas phase. Using ESI and a quadrupole TOF mass spectrometer equipped with an electron-ion reaction device, we found that SMs fragmented sufficiently to identify their lipid class, acyl group structure, and the location of double bond(s). Using this technique, nearly 200 SM molecular species were found in four natural lipid extracts: bovine milk, porcine brain, chicken egg yolk, and bovine heart. In addition to the most common backbone, d18:1, sphingosines with a range of carbon chain lengths, sphingadienes, and some sphinganine backbones were also detected. Modifications in natural SMs were also identified, including addition of iodine/methanol across a carbon-carbon double bond. This unparalleled new approach to SM analysis using EIEIO-MS shows promise as a unique and powerful tool for structural characterization.
机译:来自有机物的离子的电子碰撞激发(EIEIO),也称为电子诱导的离解,被应用于气相中的单电荷SM分子物种。使用ESI和配备电子离子反应装置的四极TOF质谱仪,我们发现SM充分碎裂,可以识别其脂质类别,酰基结构和双键位置。使用这种技术,在四种天然脂质提取物中发现了近200种SM分子物种:牛乳,猪脑,蛋黄和牛心。除了最常见的骨架d18:1外,还检测到了具有一定碳链长度的鞘氨醇,鞘氨醇和一些鞘氨醇骨架。还确定了天然SM中的修饰,包括通过碳-碳双键添加碘/甲醇。这种使用EIEIO-MS进行SM分析的无与伦比的新方法表明,它有望作为一种独特而强大的结构表征工具。

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