Section of Organic Chemistry and Biochemistry, Department of Chemistry, University of Ioannina, GR-45110 Ioannina, Greece.
International Center for Chemical and Biological Sciences, H.E.J. Research Institute of Chemistry, University of Karachi, Karachi 75270, Pakistan.
Molecules. 2022 Mar 25;27(7):2139. doi: 10.3390/molecules27072139.
Mono- and polyunsaturated lipids are particularly susceptible to peroxidation, which results in the formation of lipid hydroperoxides (LOOHs) as primary nonradical-reaction products. LOOHs may undergo degradation to various products that have been implicated in vital biological reactions, and thus in the pathogenesis of various diseases. The structure elucidation and qualitative and quantitative analysis of lipid hydroperoxides are therefore of great importance. The objectives of the present review are to provide a critical analysis of various methods that have been widely applied, and more specifically on volumetric methods, applications of UV-visible, infrared, Raman/surface-enhanced Raman, fluorescence and chemiluminescence spectroscopies, chromatographic methods, hyphenated MS techniques, NMR and chromatographic methods, NMR spectroscopy in mixture analysis, structural investigations based on quantum chemical calculations of NMR parameters, applications in living cells, and metabolomics. Emphasis will be given to analytical and structural methods that can contribute significantly to the molecular basis of the chemical process involved in the formation of lipid hydroperoxides without the need for the isolation of the individual components. Furthermore, future developments in the field will be discussed.
单不饱和和多不饱和脂质特别容易发生过氧化,这导致形成脂质过氧化物(LOOH)作为主要的非自由基反应产物。LOOH 可能会降解为各种已被牵涉到重要生物反应的产物,因此也牵涉到各种疾病的发病机制。因此,脂质过氧化物的结构阐明和定性及定量分析非常重要。本综述的目的是对已广泛应用的各种方法进行批判性分析,特别是对容量法、紫外-可见光谱法、红外光谱法、拉曼/表面增强拉曼光谱法、荧光和化学发光光谱法、色谱法、联用 MS 技术、NMR 光谱法和色谱法、混合物分析中基于 NMR 参数量子化学计算的结构研究、在活细胞中的应用以及代谢组学进行分析。重点将放在分析和结构方法上,这些方法无需分离各个组分,就可以对涉及脂质过氧化物形成的化学过程的分子基础做出重大贡献。此外,还将讨论该领域的未来发展。