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NMR-based metabolomics in human disease diagnosis: applications, limitations, and recommendations

机译:基于NMR的代谢组学在人类疾病诊断中的应用,局限性和建议

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摘要

Metabolomics is a dynamic and emerging research field, similar to proteomics, transcriptomics and genomics in affording global understanding of biological systems. It is particularly useful in functional genomic studies in which metabolism is thought to be perturbed. Metabolomics provides a snapshot of the metabolic dynamics that reflect the response of living systems to both pathophysiological stimuli and/or genetic modification. Because this approach makes possible the examination of interactions between an organism and its diet or environment, it is particularly useful for identifying biomarkers of disease processes that involve the environment. For example, the interaction of a high fat diet with cardiovascular disease can be studied via such a metabolomics approach by modeling the interaction between genes and diet. The high reproducibility of NMR-based techniques gives this method a number of advantages over other analytical techniques in large-scale and long-term metabolomic studies, such as epidemiological studies. This approach has been used to study a wide range of diseases, through the examination of biofluids, including blood plasma/serum, urine, blister fluid, saliva and semen, as well as tissue extracts and intact tissue biopsies. However, complicating the use of NMR spectroscopy in biomarker discovery is the fact that numerous variables can effect metabolic composition including, fasting, stress, drug administration, diet, gender, age, physical activity, life style and the subject’s health condition. To minimize the influence of these variations in the datasets, all experimental conditions including sample collection, storage, preparation as well as NMR spectroscopic parameters and data analysis should be optimized carefully and conducted in an identical manner as described by the local standard operating protocol . This review highlights the potential applications of NMR-based metabolomics studies and gives some recommendations to improve sample collection, sample preparation and data analysis in using this approach.
机译:代谢组学是一个充满活力的新兴研究领域,与蛋白质组学,转录组学和基因组学类似,可提供对生物系统的全面了解。它在认为代谢受到干扰的功能基因组研究中特别有用。代谢组学提供了代谢动力学的快照,反映了生命系统对病理生理刺激和/或基因修饰的反应。因为这种方法使检查生物体与其饮食或环境之间的相互作用成为可能,所以它对于识别涉及环境的疾病过程的生物标记特别有用。例如,可以通过对基因和饮食之间的相互作用进行建模的代谢组学方法研究高脂饮食与心血管疾病的相互作用。在大规模和长期的代谢组学研究(例如流行病学研究)中,基于NMR的技术具有很高的重现性,从而使该方法具有许多其他分析技术无法比拟的优势。通过检查生物流体,包括血浆/血清,尿液,起泡液,唾液和精液,以及组织提取物和完整的组织活检,该方法已用于研究多种疾病。但是,在生物标志物发现中使NMR光谱使用变得复杂的事实是,许多变量会影响代谢成分,包括禁食,压力,药物管理,饮食,性别,年龄,身体活动,生活方式和受试者的健康状况。为了最大程度地减少这些变化对数据集的影响,应仔细优化所有实验条件,包括样品收集,存储,制备以及NMR光谱参数和数据分析,并以与当地标准操作规程所述相同的方式进行。这篇综述重点介绍了基于NMR的代谢组学研究的潜在应用,并提出了一些建议,以改进使用这种方法的样品收集,样品制备和数据分析。

著录项

  • 来源
    《Metabolomics 》 |2013年第5期| 1048-1072| 共25页
  • 作者单位

    NMR Core Lab King Abdullah University of Science and Technology">(1);

    Department of Biochemistry Cambridge Systems Biology Centre University of Cambridge">(3);

    Medical Research Council Human Nutrition Research">(4);

    European Bioinformatics Institute Wellcome Trust Genome Campus Hinxton Cambridge">(5);

    Department of Biochemistry Cambridge Systems Biology Centre University of Cambridge">(3);

    Medical Research Council Human Nutrition Research">(4);

    Biological and Environmental Sciences and Engineering King Abdullah University of Science and Technology">(2);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Diagnosis; Prognosis; NMR spectroscopy; Metabolomics; Metabonomics; Biomarkers; Metabolic fingerprinting;

    机译:诊断;预后NMR光谱;代谢组学代谢组学生物标志物;代谢指纹;

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