Smith Ryan A, Omar Ashraf M, Mulani Fayaj A, Zhang Qibin
Center for Translational Biomedical Research, University of North Carolina at Greensboro, Kannapolis, North Carolina 28081, United States.
Department of Chemistry & Biochemistry, University of North Carolina at Greensboro, Greensboro, North Carolina 27402, United States.
Anal Chem. 2025 Jan 28;97(3):1879-1888. doi: 10.1021/acs.analchem.4c05940. Epub 2025 Jan 16.
Double bond (C═C) position isomerism in unsaturated lipids can indicate abnormal lipid metabolism and pathological conditions. Novel chemical derivatization and mass spectrometry-based techniques are under continuing development to provide more accurate elucidation of lipid structure in finer structural detail. Here, we introduce a new ion chemistry for annotating lipid C═C positions, which is highly efficient for liquid chromatography-mass spectrometry-based lipidomics. This ion chemistry relies on the online derivatization of lipid C═C with ozone and nitrogen oxides upon fragmentation by tandem mass spectrometry, yielding characteristic product ions capable of unambiguously annotating C═C regioisomers. The new workflow was thoroughly evaluated with various glycerophospholipids and fatty acids and applied to human plasma lipid extract, successfully identified and quantified 270 glycerophospholipid and 36 fatty acid C═C isomers with an in-house developed software, OzNOx Companion, for automated data analysis.
不饱和脂质中的双键(C═C)位置异构可指示异常的脂质代谢和病理状况。基于新型化学衍生化和质谱的技术正在不断发展,以更精确地阐明脂质结构的细微结构细节。在此,我们介绍一种用于注释脂质C═C位置的新离子化学方法,该方法对基于液相色谱-质谱的脂质组学非常有效。这种离子化学方法依赖于串联质谱裂解时脂质C═C与臭氧和氮氧化物的在线衍生化,产生能够明确注释C═C区域异构体的特征性产物离子。我们用各种甘油磷脂和脂肪酸对新工作流程进行了全面评估,并将其应用于人体血浆脂质提取物,使用自行开发的软件OzNOx Companion成功鉴定并定量了270种甘油磷脂和36种脂肪酸C═C异构体,用于自动化数据分析。