Central Analytical Research Facility, Institute for Future Environments, Queensland University of Technology, Brisbane, QLD, 4000, Australia.
Institute of Bioanalytical Chemistry, Faculty of Chemistry and Mineralogy, Universität Leipzig, Leipzig, Germany.
J Am Soc Mass Spectrom. 2019 Sep;30(9):1621-1630. doi: 10.1007/s13361-019-02261-z. Epub 2019 Jun 20.
Over 1500 different lipids have been reported in human plasma at the sum composition level. Yet the number of unique lipids present is surely higher, once isomeric contributions from double bond location(s) and fatty acyl regiochemistry are considered. In order to resolve this ambiguity, herein, we describe the incorporation of ozone-induced dissociation (OzID) into data-independent shotgun lipidomics workflows on a high-resolution hybrid quadrupole-Orbitrap platform. In this configuration, [M + Na] ions generated by electrospray ionization of a plasma lipid extract were transmitted through the quadrupole in 1 Da segments. Reaction of mass-selected lipid ions with ozone in the octopole collision cell yielded diagnostic ions for each double bond position. The increased ozone concentration in this region significantly improved ozonolysis efficiency compared with prior implementations on linear ion-trap devices. This advancement translates into increased lipidome coverage and improvements in duty cycle for data-independent MS/MS analysis using shotgun workflows. Grouping all precursor ions with a common OzID neutral loss enables straightforward classification of the lipidome by unsaturation position (with respect to the methyl terminus). Two-dimensional maps obtained from this analysis provide a powerful visualization of structurally related lipids and lipid isomer families within plasma. Global profiling of lipid unsaturation in plasma extracts reveals that most unsaturated lipids are present as isomeric mixtures. These new insights provide a unique picture of underlying metabolism that could in the future provide novel indicators of health and disease.
在人血浆的总和组成水平上已经报道了超过 1500 种不同的脂质。然而,一旦考虑双键位置和脂肪酸区域化学的立体异构贡献,存在的独特脂质数量肯定更高。为了解决这个问题,在此,我们描述了在高分辨混合四极杆-Orbitrap 平台上将臭氧诱导解离(OzID)纳入无数据依赖型 shotgun 脂质组学工作流程中。在这种配置中,通过等离子体质谱脂质提取物的电喷雾电离产生的 [M+Na]+离子以 1 Da 片段穿过四极杆。在八极碰撞池中,质量选择的脂质离子与臭氧反应生成每个双键位置的诊断离子。与线性离子阱设备上的先前实施相比,该区域中臭氧浓度的增加显著提高了臭氧分解效率。这一进展转化为使用 shotgun 工作流程进行无数据依赖型 MS/MS 分析时脂质组学覆盖范围的增加和工作周期的改善。通过 OzID 中性丢失将所有具有共同前体离子的分组,可通过不饱和度位置(相对于甲基末端)对脂质组进行简单分类。从这种分析获得的二维图谱提供了血浆中结构相关脂质和脂质异构体家族的强大可视化。对血浆提取物中脂质不饱和度的全局分析表明,大多数不饱和脂质都以立体异构混合物的形式存在。这些新的见解提供了潜在代谢的独特图景,未来可能为健康和疾病提供新的指标。