Understanding the nitrolipidome: From chemistry to mass spectrometry and biological significance of modified complex lipids

脂类学 化学 轨道轨道 质谱法 串联质谱法 代谢组学 生物化学 计算生物学 色谱法 生物
作者
Bruna Neves,Dolores Pérez-Sala,Helena Beatriz Ferreira,Inês M.S. Guerra,Ana S.P. Moreira,Pedro Domingues,M. Rosário Domingues,Tânia Melo
出处
期刊:Progress in Lipid Research [Elsevier BV]
卷期号:87: 101176-101176 被引量:1
标识
DOI:10.1016/j.plipres.2022.101176
摘要

Complex lipids, phospholipids (PLs) and triacylglycerides (TAGs), are prone to modifications induced by reactive nitrated species and reactive oxygen species, generating a range of nitrated, nitrosated or nitroxidized derivatives, as nitro PLs and nitro TAGs. These modified lipids (epilipids) have been reported in vitro and in vivo using lipidomics approaches. However, their detection in living systems remains a challenge hampered by its complexity, high structural diversity, and low abundance. The advances in high-resolution mass spectrometry combined with the higher sensitivity of the instruments like Orbitrap-based mass spectrometers opened new opportunities for the detection of these modified complex lipids. This review summarizes the challenges and findings behind the identification of nitrated, nitrosated and nitroxidized PLs and TAGs fragmentation fingerprints based on collision-induced dissociation (CID) and higher energy CID (HCD) MS/MS approaches. Following what has already been reported for nitrated fatty acids, these complex lipids are found to act as endogenous mediators with potential electrophilic properties and can express bioactivities such as anti-inflammatory and antioxidant actions. This information can be used to design untargeted and targeted lipidomics strategies for these modified complex lipids in biological samples as well as in pathological, food and industrial settings, further unveiling their biological and signalling roles.
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