Department of Chemical Engineering, Aristotle University Thessaloniki, 541 24 Thessaloniki, Greece.
J Pharm Biomed Anal. 2014 Jan;87:12-25. doi: 10.1016/j.jpba.2013.06.032. Epub 2013 Jul 17.
Based on publication and citation numbers liquid chromatography (LC-MS) has become the major analytical technology in the field of global metabolite profiling. This dominance reflects significant investments from both the research community and instrument manufacturers. Here an overview of the approaches taken for LC-MS-based metabolomics research is given, describing critical steps in the realisation of such studies: study design and its needs, specific technological problems to be addressed and major obstacles in data treatment and biomarker identification. The current state of the art for LC-MS-based analysis in metabonomics/metabolomics is described including recent developments in liquid chromatography, mass spectrometry and data treatment as these are applied in metabolomics underlining the challenges, limitations and prospects for metabolomics research. Examples of the application of metabolite profiling in the life sciences focusing on disease biomarker discovery are highlighted. In addition, new developments and future prospects are described.
基于文献发表和被引数量,液相色谱-质谱联用(LC-MS)已经成为全球代谢组学分析领域的主要技术手段。这种主导地位反映了研究界和仪器制造商的大量投资。本文概述了基于 LC-MS 的代谢组学研究中所采用的方法,描述了实现这些研究的关键步骤:研究设计及其需求、需要解决的具体技术问题以及数据处理和生物标志物鉴定中的主要障碍。本文还介绍了代谢组学中 LC-MS 分析的最新进展,包括液相色谱、质谱和数据处理方面的最新进展,这些进展应用于代谢组学中,强调了代谢组学研究的挑战、局限性和前景。重点介绍了代谢物分析在生命科学中应用的实例,侧重于疾病生物标志物的发现。此外,还描述了新的发展和未来展望。