Analytical separations for lipids in complex, non-polar lipidomes using differential mobility spectrometry
Hancock, Sarah, Poad, Berwyck, Willcox, Mark, Blanksby, Stephen, & Mitchell, Todd (2019) Analytical separations for lipids in complex, non-polar lipidomes using differential mobility spectrometry. Journal of Lipid Research, 60(11), pp. 1968-1978.
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Description
Secretions from meibomian glands located within the eyelid (commonly known as meibum) are rich in nonpolar lipid classes incorporating very-long (22–30 carbons) and ultra-long (>30 carbons) acyl chains. The complex nature of the meibum lipidome and its preponderance of neutral, nonpolar lipid classes presents an analytical challenge, with typically poor chromatographic resolution, even between different lipid classes. To address this challenge, we have deployed differential mobility spectrometry (DMS)-MS to interrogate the human meibum lipidome and demonstrate near-baseline resolution of the two major nonpolar classes contained therein, namely wax esters and cholesteryl esters. Within these two lipid classes, we describe ion mobility behavior that is associated with the length of their acyl chains and location of unsaturation. This capability was exploited to profile the molecular speciation within each class and thus extend meibum lipidome coverage. Intriguingly, structure-mobility relationships in these nonpolar lipids show similar trends and inflections to those previously reported for other physicochemical properties of lipids (e.g., melting point and phase-transition temperatures). Taken together, these data demonstrate that differential ion mobility provides a powerful orthoganol separation technology for the analysis of neutral lipids in complex matrices, such as meibum, and may further provide a means to predict physicochemical properties of lipids that could assist in inferring their biological function(s).
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ID Code: | 133637 | ||||
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Item Type: | Contribution to Journal (Journal Article) | ||||
Refereed: | Yes | ||||
ORCID iD: |
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Measurements or Duration: | 11 pages | ||||
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Keywords: | Cholesteryl esters, Ion mobility, Lipidomics, Mass spectrometry, Meibum, Wax esters | ||||
DOI: | 10.1194/jlr.D094854 | ||||
ISSN: | 0022-2275 | ||||
Pure ID: | 33502027 | ||||
Divisions: | Past > Institutes > Institute for Future Environments Past > QUT Faculties & Divisions > Science & Engineering Faculty |
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Funding Information: | This work was supported by Australian Research Council Linkage Project Grant LP140100711 (with industry support from Allergan), Discovery Project Grants DP150101715 and DP190101486, and Future Fellowship Grant FT110100249 (T.W.M.). | ||||
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Copyright Owner: | 2019 Hancock et al. | ||||
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Deposited On: | 15 Oct 2019 02:27 | ||||
Last Modified: | 26 Feb 2025 21:50 |
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