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Development of a sensitive and quantitative method for the identification of two major furan fatty acids in human plasma

  • Long Xu
  • , Changfeng Hu
  • , Yongguo Liu
  • , Siming Li
  • , Walter Vetter
  • , Huiyong Yin*
  • , Yonghua Wang*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

66 Downloads (CityUHK Scholars)

Abstract

This article focuses on the establishment of an accurate and sensitive quantitation method for the analysis of furan fatty acids. In particular, the sensitivity of GC/MS and UPLC/ESI/MS/MS was compared for the identification and quantification of furan fatty acids. Different methylation methods were tested with respect to GC/MS analysis. Special attention needs to be paid to the methylation of furan fatty acids, as acidic catalysts might lead to the degradation of the furan ring. GC/MS analysis in full-scan mode demonstrated that the limit of quantitation was 10 μM. UPLC/ESI/MS/MS in multiple reaction monitoring mode displayed a higher detection sensitivity than GC/MS. Moreover, the identification of furan fatty acids with charge-reversal derivatization was tested in the positive mode with two widely used pyridinium salts. Significant oxidation was unexpectedly observed using N-(4-aminomethylphenyl) pyridinium as a derivatization agent. The formed 3-acyl-oxymethyl-1-methylpyridinium iodide derivatized by 2-bromo-1-methylpyridinium iodide and 3-carbinol-1-methylpyridinium iodide improved the sensitivity more than 2,000-fold compared with nonderivatization in the negative mode by UPLC/ESI/MS/MS. This charge-reversal derivatization enabled the targeted quantitation of furan fatty acids in human plasma. Thus, it is anticipated that this protocol could greatly contribute to the clarification of pathological mechanisms related to furan fatty acids and their metabolites. © 2020 Xu et al.
Original languageEnglish
Pages (from-to)560-569
JournalJournal of Lipid Research
Volume61
Issue number4
Online published6 Jan 2020
DOIs
Publication statusPublished - Apr 2020
Externally publishedYes

Funding

This work was supported by National Science Fund for Distinguished Young Scholars of China Grant 31725022; National Natural Science Foundation of China Grant 31601398; Beijing Advanced Innovation Center for Food Nutrition and Human Health, Beijing Technology and Business University Grant 20171049; and “Blue Ocean Talent Plan” Innovation and Entrepreneurship Team Grant 201811070001. The authors declare that they have no conflicts of interest with the contents of the article.

Research Keywords

  • Charge-reversal derivatization
  • Multiple reaction monitoring
  • Precursor ion scan

Publisher's Copyright Statement

  • This full text is made available under CC-BY 4.0. https://creativecommons.org/licenses/by/4.0/

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