ArticleJournal of lipid research2022
Artifactual FA dimers mimic FAHFA signals in untargeted metabolomics pipelines.
Article in Journal of lipid research, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
What it found
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Who cites it
7 citing papers in PubMed, 17 citations in OpenAlex.
- The measurement, regulation and biological activity of FAHFAs.Nature chemical biology · 2025Review
- Distinguishing Artifactual Fatty Acid Dimers from Fatty Acid Esters of Hydroxy Fatty Acids in Untargeted LC-MS Pipelines.Methods in molecular biology (Clifton, N.J.) · 2025Article
- Gender-based heterogeneity of FAHFAs in trained runners.PloS one · 2024Article
- From Oxidized Fatty Acids to Dimeric Species: In Vivo Relevance, Generation and Methods of Analysis.Molecules (Basel, Switzerland) · 2023Review
- Untargeted hair lipidomics: comprehensive evaluation of the hair-specific lipid signature and considerations for retrospective analysis.Analytical and bioanalytical chemistry · 2023Article
- Four-dimensional trapped ion mobility spectrometry lipidomics for high throughput clinical profiling of human blood samples.Nature communications · 2023Article
- Adipose triglyceride lipase: the first transacylase for FAHFAs.Life metabolism · 2023Article
Corrections and comments
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Authors and funding
5 authors at 1 institution in 3 countries.
Funding
Abstract
FA esters of hydroxy FAs (FAHFAs) are lipokines with extensive structural and regional isomeric diversity that impact multiple physiological functions, including insulin sensitivity and glucose homeostasis. Because of their low molar abundance, FAHFAs are typically quantified using highly sensitive LC-MS/MS methods. Numerous relevant MS databases house in silico-spectra that allow identification and speciation of FAHFAs. These provisional chemical feature assignments provide a useful starting point but could lead to misidentification. To address this possibility, we analyzed human serum with a commonly applied high-resolution LC-MS untargeted metabolomics platform. We found that many chemical features are putatively assigned to the FAHFA lipid class based on exact mass and fragmentation patterns matching spectral databases. Careful validation using authentic standards revealed that many investigated signals provisionally assigned as FAHFAs are in fact FA dimers formed in the LC-MS pipeline. These isobaric FA dimers differ structurally only by the presence of an olefinic bond. Furthermore, stable isotope-labeled oleic acid spiked into human serum at subphysiological concentrations showed concentration-dependent formation of a diverse repertoire of FA dimers that analytically mimicked FAHFAs. Conversely, validated FAHFA species did not form spontaneously in the LC-MS pipeline. Together, these findings underscore that FAHFAs are endogenous lipid species. However, nonbiological FA dimers forming in the setting of high concentrations of FFAs can be misidentified as FAHFAs. Based on these results, we assembled a FA dimer database to identify nonbiological FA dimers in untargeted metabolomics datasets.
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Registered trials
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