Khoo Soo Hean Gary, Al-Rubeai Mohamed
Department of Chemical Engineering, University of Birmingham, Edgbaston, Birmingham, UK.
Biotechnol Appl Biochem. 2007 Jun;47(Pt 2):71-84. doi: 10.1042/BA20060221.
Metabolomics, the 'global' study of metabolite changes in a biological system, has drawn a significant amount of interest over the last few years. It can be said to be an amalgam of traditional areas such as metabolite analysis, bioanalytical development and chemometrics. Thus, piecing these areas together into the cohesive science of metabolome analysis has proved to be difficult. Most work to date has been focused on plant, microbial, as well as tissue and biofluid samples. However, the diverse potential of metabolomics in many fields, including cell engineering, has made it a universal tool for industrial, medical and research purposes. It is also a vital component of a 'systems biology' approach, as it is believed to be a good reflection of the phenotype of any cell or tissue. At the heart of metabolomics' growth is the issue of method development, including sample preparation, instrument analysis, data processing and bioinformatics. Here, we look at the cell-culture applications of metabolomics and the issues that can transform metabolomics into a mature 'omics' science.
代谢组学作为对生物系统中代谢物变化的“全局”研究,在过去几年中引起了广泛关注。可以说它是代谢物分析、生物分析开发和化学计量学等传统领域的融合。因此,将这些领域整合为连贯的代谢组分析科学已被证明是困难的。迄今为止,大多数工作都集中在植物、微生物以及组织和生物流体样本上。然而,代谢组学在包括细胞工程在内的许多领域的多样潜力,使其成为工业、医学和研究目的的通用工具。它也是“系统生物学”方法的重要组成部分,因为人们认为它能很好地反映任何细胞或组织的表型。代谢组学发展的核心是方法开发问题,包括样品制备、仪器分析、数据处理和生物信息学。在此,我们探讨代谢组学的细胞培养应用以及能将代谢组学转变为一门成熟的“组学”科学的相关问题。