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采用液相色谱-离子淌度分离-串联质谱法对非离子表面活性剂聚山梨酯 85 的特性进行分析。

Characterization of polysorbate 85, a nonionic surfactant, by liquid chromatography vs. ion mobility separation coupled with tandem mass spectrometry.

机构信息

Department of Chemistry, The University of Akron, Akron, OH 44325-3601, United States.

Department of Chemistry, The University of Akron, Akron, OH 44325-3601, United States.

出版信息

Anal Chim Acta. 2014 Jan 15;808:83-93. doi: 10.1016/j.aca.2013.07.026. Epub 2013 Jul 15.

DOI:10.1016/j.aca.2013.07.026
PMID:24370095
Abstract

Liquid chromatography (LC) and ion mobility (IM) separation have been coupled with mass spectrometry (MS) and tandem mass spectrometry (MS(2)) to characterize a commercially important nonionic surfactant, polysorbate 85. The constituents of this amphiphilic blend contained a sorbitan or isosorbide core that was chain extended with poly(ethylene oxide) (PEO) and partially esterified at the PEO termini with oleic acid or, to a lesser extent, other fatty acids. Using interactive LC in reverse-phase mode, the oligomers of the surfactant were separated according to their hydrophobicity/hydrophilicity balance. On the other hand, IM spectrometry dispersed the surfactant oligomers by their charge and collision cross section (i.e. size/shape). With either separation method, an increased number of fatty ester groups and/or lack of the polar sorbitan (or isosorbide) core led to higher retention/drift times, enabling the separation of isobaric species or species with superimposed isotope patterns, so that their ester content could be conclusively identified by MS(2). LC-MS and IM-MS permitted the detection of several byproducts besides the major PEO-sorbitan oleate oligomers. LC-MS provides the separation resolution needed for quantitative determination of the degree of esterification. IM-MS, which minimizes analysis time and solvent use, is ideally suitable for a fast, qualitative survey of samples differing in their minor constituents or impurities.

摘要

液相色谱(LC)和离子淌度(IM)分离已与质谱(MS)和串联质谱(MS(2))相结合,用于表征一种商业上重要的非离子表面活性剂,聚山梨酯 85。这种两亲混合物的成分包含山梨糖醇或异山梨醇核,该核通过聚环氧乙烷(PEO)链延伸,并在 PEO 末端部分与油酸酯化,或在较小程度上与其他脂肪酸酯化。使用反相模式的交互式 LC,根据疏水性/亲水性平衡分离表面活性剂的低聚物。另一方面,IM 光谱通过电荷和碰撞截面(即大小/形状)来分散表面活性剂低聚物。使用任一种分离方法,增加的脂肪酸酯基团的数量和/或缺乏极性的山梨糖醇(或异山梨醇)核会导致更高的保留/漂移时间,从而能够分离等质异位体或具有重叠同位素模式的物质,以便通过 MS(2) 可以明确鉴定其酯含量。LC-MS 和 IM-MS 除了主要的 PEO-山梨糖醇油酸低聚物外,还允许检测到几种副产物。LC-MS 提供了定量测定酯化度所需的分离分辨率。IM-MS 最大限度地减少了分析时间和溶剂的使用,非常适合快速定性检测在次要成分或杂质方面存在差异的样品。

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