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用气相色谱-质谱法鉴定单酰基甘油的区域异构体。

Identification of monoacylglycerol regio-isomers by gas chromatography-mass spectrometry.

机构信息

Nestlé Research Center, Bioanalytical Science, Vers-chez-les-Blanc, P.O. Box 44, CH-1000 Lausanne 26, Switzerland.

出版信息

J Chromatogr A. 2010 Feb 26;1217(9):1543-8. doi: 10.1016/j.chroma.2010.01.016. Epub 2010 Jan 14.

Abstract

Monoacylglycerols (MAGs) are lipids found in trace amounts in plants and animal tissues. While they are widely used in various industrial applications, accurate determination of the regio-specific distribution is hindered by the lack of stable, commercially available standards. Indeed, unsaturated beta-MAG (or Sn-2 MAG) readily undergoes isomerization into alpha-MAG (acyl chain is attached to the Sn-1 or the Sn-3 position). In the present study, we describe structural elucidation of alpha- and beta-regio-isomers of monopalmitoyl-glycerol (MAG C16:0) as model compounds in their silylated forms using gas chromatography-mass spectrometry (GC-MS) with electronic impact (EI) ionization. MS fragmentation of alpha-MAG C16:0 is characterized by the loss of methylene(trimethylsilyl)oxonium (103 amu) and the consecutive loss of acyl chain yielding a fragment ion at m/z 205. The fragmentation pattern of beta-MAG C16:0 shows a series of diagnostic fragments at m/z 218, 203, 191 and 103 that are not formed from the alpha-isomer and hereby enable reliable distinction of these regio-isomers. Possible fragmentation scenarios are postulated to explain the formation of these marker ions, which were also applied to characterize the regio-isomer composition of a complex mixture of MAG sample containing n-3 long-chain polyunsaturated fatty acids.

摘要

单酰基甘油 (MAG) 是在植物和动物组织中痕量存在的脂质。尽管它们在各种工业应用中被广泛使用,但由于缺乏稳定的商业可得标准,准确确定区域特异性分布受到阻碍。事实上,不饱和的β-MAG(或 Sn-2 MAG)很容易异构化为α-MAG(酰基链连接到 Sn-1 或 Sn-3 位置)。在本研究中,我们描述了使用气相色谱-质谱法 (GC-MS) 结合电子轰击 (EI) 离子化,以其硅烷化形式作为模型化合物,对单棕榈酰甘油 (MAG C16:0) 的α-和β-区域异构体的结构进行了阐明。α-MAG C16:0 的 MS 碎裂特征是失去亚甲基(三甲基硅基)氧鎓 (103 amu),然后连续失去酰基链,生成 m/z 205 的碎片离子。β-MAG C16:0 的碎裂模式显示出一系列在 m/z 218、203、191 和 103 处的特征碎片,这些碎片不会由α-异构体形成,因此能够可靠地区分这些区域异构体。提出了可能的碎裂情景来解释这些标记离子的形成,这些离子也被应用于表征含有 n-3 长链多不饱和脂肪酸的复杂 MAG 样品的区域异构体组成。

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