Rheumatology Research Group, Vall d'Hebron Research Institute , Barcelona , Spain ; Department of Automatic Control (ESAII), Polytechnic University of Catalonia , Barcelona , Spain.
Rheumatology Research Group, Vall d'Hebron Research Institute , Barcelona , Spain.
Front Bioeng Biotechnol. 2015 Mar 5;3:23. doi: 10.3389/fbioe.2015.00023. eCollection 2015.
Metabolomics comprises the methods and techniques that are used to measure the small molecule composition of biofluids and tissues, and is actually one of the most rapidly evolving research fields. The determination of the metabolomic profile - the metabolome - has multiple applications in many biological sciences, including the developing of new diagnostic tools in medicine. Recent technological advances in nuclear magnetic resonance and mass spectrometry are significantly improving our capacity to obtain more data from each biological sample. Consequently, there is a need for fast and accurate statistical and bioinformatic tools that can deal with the complexity and volume of the data generated in metabolomic studies. In this review, we provide an update of the most commonly used analytical methods in metabolomics, starting from raw data processing and ending with pathway analysis and biomarker identification. Finally, the integration of metabolomic profiles with molecular data from other high-throughput biotechnologies is also reviewed.
代谢组学包括用于测量生物体液和组织中小分子组成的方法和技术,实际上是发展最快的研究领域之一。代谢组学图谱(代谢组)的确定在许多生物科学中都有多种应用,包括在医学中开发新的诊断工具。近年来,核磁共振和质谱技术的进步极大地提高了我们从每个生物样本中获取更多数据的能力。因此,需要快速、准确的统计和生物信息学工具来处理代谢组学研究中产生的数据的复杂性和数量。在这篇综述中,我们从原始数据处理开始,最后进行途径分析和生物标志物鉴定,提供了代谢组学中最常用的分析方法的最新信息。最后,还综述了代谢组学谱与其他高通量生物技术的分子数据的整合。