Amathieu Roland, Triba Mohamed Nawfal, Goossens Corentine, Bouchemal Nadia, Nahon Pierre, Savarin Philippe, Le Moyec Laurence
Roland Amathieu, Assitance Publique des Hôpitaux de Paris (AP-HP), Réanimation polyvalente, Hôpital Universitaire Jean Verdier, 93140 Bondy, France.
World J Gastroenterol. 2016 Jan 7;22(1):417-26. doi: 10.3748/wjg.v22.i1.417.
Metabolomics is defined as the quantitative measurement of the dynamic multiparametric metabolic response of living systems to pathophysiological stimuli or genetic modification. It is an "omics" technique that is situated downstream of genomics, transcriptomics and proteomics. Metabolomics is recognized as a promising technique in the field of systems biology for the evaluation of global metabolic changes. During the last decade, metabolomics approaches have become widely used in the study of liver diseases for the detection of early biomarkers and altered metabolic pathways. It is a powerful technique to improve our pathophysiological knowledge of various liver diseases. It can be a useful tool to help clinicians in the diagnostic process especially to distinguish malignant and non-malignant liver disease as well as to determine the etiology or severity of the liver disease. It can also assess therapeutic response or predict drug induced liver injury. Nevertheless, the usefulness of metabolomics is often not understood by clinicians, especially the concept of metabolomics profiling or fingerprinting. In the present work, after a concise description of the different techniques and processes used in metabolomics, we will review the main research on this subject by focusing specifically on in vitro proton nuclear magnetic resonance spectroscopy based metabolomics approaches in human studies. We will first consider the clinical point of view enlighten physicians on this new approach and emphasis its future use in clinical "routine".
代谢组学的定义是对生物系统对病理生理刺激或基因修饰的动态多参数代谢反应进行定量测量。它是一种“组学”技术,位于基因组学、转录组学和蛋白质组学的下游。代谢组学被认为是系统生物学领域中用于评估全球代谢变化的一项有前途的技术。在过去十年中,代谢组学方法已广泛应用于肝病研究,用于检测早期生物标志物和改变的代谢途径。它是一种强大的技术,可增进我们对各种肝病病理生理学的了解。它可以成为帮助临床医生进行诊断过程的有用工具,特别是区分恶性和非恶性肝病以及确定肝病的病因或严重程度。它还可以评估治疗反应或预测药物性肝损伤。然而,临床医生往往不了解代谢组学的作用,尤其是代谢组学分析或指纹图谱的概念。在本研究中,在简要描述代谢组学中使用的不同技术和过程之后,我们将回顾关于该主题的主要研究,特别关注基于体外质子核磁共振波谱的代谢组学方法在人体研究中的应用。我们将首先从临床角度出发,使医生了解这种新方法,并强调其在临床“常规”中的未来应用。