Department of Biochemistry and Molecular Biology, University of Southern Denmark, DK-5230 Odense, Denmark.
Anal Biochem. 2013 Dec 1;443(1):88-96. doi: 10.1016/j.ab.2013.08.020. Epub 2013 Aug 29.
Detailed analysis of lipid species can be challenging due to their structural diversity and wide concentration range in cells, tissues, and biofluids. To address these analytical challenges, we devised a reproducible, sensitive, and integrated lipidomics workflow based on normal-phase liquid chromatography-Fourier transform mass spectrometry (LC-FTMS) and LC-ITMS(2) (ion trap tandem mass spectrometry) for profiling and structural analysis of lipid species. The workflow uses a normal-phase LC system for efficient separation of apolar and polar lipid species combined with sensitive and specific analysis powered by a chip-based nanoelectrospray ion source and a hybrid ion trap-orbitrap mass spectrometer. The workflow was executed using a primary LC-FTMS survey routine for identification and profiling of lipid species based on high-mass accuracy and retention time followed by a targeted LC-ITMS(2) routine for characterizing the fatty acid moieties of identified lipid species. We benchmarked the performance of the workflow by characterizing the chromatographic properties of the LC-MS system for general lipid analysis. In addition, we demonstrate the efficacy of the workflow by reporting a study of low-abundant triacylglycerol and ceramide species in mouse brain cerebellum and 3T3-L1 adipocytes, respectively. The workflow described here is generic and can be extended for detailed lipid analysis of sample matrices having a wide range of lipid compositions.
由于脂质种类在细胞、组织和生物体液中的结构多样性和广泛浓度范围,对其进行详细分析具有挑战性。为了解决这些分析挑战,我们设计了一种基于正相液相色谱-傅里叶变换质谱(LC-FTMS)和 LC-ITMS(2)(离子阱串联质谱)的重现性好、灵敏度高且集成的脂质组学工作流程,用于分析脂质种类的特征和结构。该工作流程使用正相 LC 系统,可有效分离非极性和极性脂质种类,并结合基于芯片的纳升电喷雾源和混合离子阱-轨道阱质谱仪的灵敏和特异性分析。该工作流程使用基于高质量精度和保留时间的初级 LC-FTMS 调查程序进行脂质种类的鉴定和分析,然后使用靶向 LC-ITMS(2)程序对鉴定的脂质种类的脂肪酸部分进行特征分析。我们通过对 LC-MS 系统进行一般脂质分析的色谱性能进行基准测试,来验证该工作流程的性能。此外,我们还分别通过报道在小鼠脑小脑和 3T3-L1 脂肪细胞中低丰度三酰甘油和神经酰胺种类的研究,展示了该工作流程的效果。这里描述的工作流程是通用的,可以扩展用于具有广泛脂质组成的样品基质的详细脂质分析。