Lindon John C, Holmes Elaine, Nicholson Jeremy K
Imperial College London, Biological Chemistry, Biomedical Sciences Division, Faculty of Medicine, Sir Alexander Fleming Building, South Kensington, London SW7 2AZ, UK.
Curr Opin Mol Ther. 2004 Jun;6(3):265-72.
Metabonomics uses a combination of data-rich analytical chemical methods such as nuclear magnetic resonance spectroscopy and mass spectrometry together with chemometrics for profiling metabolism and interpreting metabolic fingerprints in complex biological systems. The methods have been applied in many areas of relevance to pharmaceutical research and development, including drug safety assessment, characterization of genetically modified animal models of disease, diagnosis of human disease, understanding physiological variation and drug therapy monitoring. As well as providing a novel means of sample classification and effect evaluation, the approach can lead to identification of combinations of biomarkers for those effects. These attributes mean that metabonomics will be integral in the drive towards personalized healthcare.
代谢组学结合了数据丰富的分析化学方法,如核磁共振光谱法和质谱法,并运用化学计量学对复杂生物系统中的代谢进行分析和解读代谢指纹。这些方法已应用于与药物研发相关的许多领域,包括药物安全性评估、疾病转基因动物模型的表征、人类疾病诊断、理解生理变异以及药物治疗监测。除了提供一种新的样本分类和效果评估手段外,该方法还能识别出产生这些效果的生物标志物组合。这些特性意味着代谢组学在推动个性化医疗方面将不可或缺。