4.6 Article

Comprehensive lipidomic analysis of human plasma using multidimensional liquid- and gas-phase separations: Two-dimensional liquid chromatography-mass spectrometry vs. liquid chromatography-trapped-ion-mobility-mass spectrometry

期刊

JOURNAL OF CHROMATOGRAPHY A
卷 1530, 期 -, 页码 90-103

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.chroma.2017.11.014

关键词

Lipidomics; Multidimensional separation; Trapped-ion-mobility mass spectrometry; On-line comprehensive two-dimensional; liquid chromatography; Human plasma; Untargeted analysis

资金

  1. The Netherlands Organization for Scientific Research (NWO) [053.21.102]
  2. NWO-VENI grant [722.015.009]

向作者/读者索取更多资源

Recent advancements in separation science have resulted in the commercialization of multidimensional separation systems that provide higher peak capacities and, hence, enable a more-detailed characterization of complex mixtures. In particular, two powerful analytical tools are increasingly used by analytical scientists, namely online comprehensive two-dimensional liquid chromatography (LC x LC, having a second-dimension separation in the liquid phase) and liquid chromatography-ion mobility-spectrometry (LC-IMS, second dimension separation in the gas phase). The goal of the current study was a general assessment of the liquid-chromatography-trapped ion -mobility-mass spectrometry (LC-TIMS-MS) and comprehensive two-dimensional liquid chromatography-mass spectrometry (LC x LC-MS) platforms for untargeted lipid mapping in human plasma. For the first time trapped-ion-mobility spectrometry (TIMS) was employed for the separation of the major lipid classes and ion-mobility-derived collision-cross-section values were determined for a number of lipid standards. The general effects of a number of influencing parameters have been inspected and possible directions for improvements are discussed. We aimed to provide a general indication and practical guidelines for the analyst to choose an efficient multidimensional separation platform according to the particular requirements of the application. Analysis time, orthogonality, peak capacity, and an indicative measure for the resolving power are discussed as main characteristics for multidimensional separation systems. (C) 2017 Elsevier B.V. All rights reserved.

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