Department of Medical Biochemistry, Oslo University Hospital, Oslo, Norway.
Methods Mol Biol. 2025;2855:23-39. doi: 10.1007/978-1-0716-4116-3_2.
Metabolomics can be used for a multitude of purposes, including monitoring of treatment effects and for increasing the knowledge of the pathophysiology of a wide range of diseases. Global (commonly referred to as "untargeted") metabolomics is hypothesis-generating and provides the opportunity to discover new biomarkers. Being versatile and having a high degree of selectivity and sensitivity, liquid chromatography-mass spectrometry (LC-MS) is the most common technique applied for metabolomics. We here present our global metabolomics LC-electrospray ionization-MS/MS method. The sample preparation procedures for plasma, serum, dried blood spots, urine, and cerebrospinal fluid are simple and nonspecific to reduce the risk of analyte loss. The method is based on reversed-phase chromatography using a diphenyl column. The high-resolution Q Exactive Orbitrap MS with data-dependent acquisition provides MS/MS spectra of a wide range of analytes. Our method covers a large part of the metabolome regarding hydrophobicity and compound class.
代谢组学可用于多种目的,包括监测治疗效果和增加对多种疾病病理生理学的了解。全局(通常称为“非靶向”)代谢组学具有生成假设的能力,并提供了发现新生物标志物的机会。由于具有多功能性、高度选择性和灵敏度,液相色谱-质谱联用技术(LC-MS)是最常用于代谢组学的技术。我们在此介绍我们的全局代谢组学 LC-电喷雾电离-MS/MS 方法。用于血浆、血清、干血斑、尿液和脑脊液的样品制备程序简单且无特异性,以降低分析物损失的风险。该方法基于反相色谱法,使用二苯柱。高分辨率 Q Exactive Orbitrap MS 与基于数据的采集提供了广泛的分析物的 MS/MS 光谱。我们的方法涵盖了代谢组学中关于疏水性和化合物类别的大部分内容。