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Mass appeal: metabolite identification in mass spectrometry-focused untargeted metabolomics

机译:大众吸引力:以质谱为中心的非靶向代谢组学中的代谢物鉴定

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摘要

Metabolomics has advanced significantly in the past 10 years with important developments related to hardware, software and methodologies and an increasing complexity of applications. In discovery-based investigations, applying untargeted analytical methods, thousands of metabolites can be detected with no or limited prior knowledge of the metabolite composition of samples. In these cases, metabolite identification is required following data acquisition and processing. Currently, the process of metabolite identification in untargeted metabolomic studies is a significant bottleneck in deriving biological knowledge from metabolomic studies. In this review we highlight the different traditional and emerging tools and strategies applied to identify subsets of metabolites detected in untargeted metabolomic studies applying various mass spectrometry platforms. We indicate the workflows which are routinely applied and highlight the current limitations which need to be overcome to provide efficient, accurate and robust identification of metabolites in untargeted metabolomic studies. These workflows apply to the identification of metabolites, for which the structure can be assigned based on entries in databases, and for those which are not yet stored in databases and which require a de novo structure elucidation.
机译:在过去的十年中,代谢组学取得了长足的进步,与硬件,软件和方法学相关的重要发展以及应用程序的复杂性不断提高。在基于发现的研究中,采用非针对性的分析方法,可以在没有或只有有限的样品代谢物成分先验知识的情况下检测到数千种代谢物。在这些情况下,需要在数据采集和处理后鉴定代谢物。当前,在非目标代谢组学研究中鉴定代谢物的过程是从代谢组学研究中获得生物学知识的重要瓶颈。在这篇综述中,我们着重介绍了不同的传统和新兴工具和策略,这些工具和策略可用于识别在使用各种质谱平台进行的非靶向代谢组学研究中检测到的代谢物的子集。我们指出了常规应用的工作流程,并着重指出了当前需要克服的局限性,以便在非目标代谢组学研究中提供高效,准确和可靠的代谢物鉴定。这些工作流程适用于鉴定代谢物,可以根据数据库中的条目为其指定结构,而对于尚未存储在数据库中并且需要从头进行结构阐明的代谢物。

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  • 来源
    《Metabolomics》 |2013年第1期|44-66|共23页
  • 作者单位

    Centre for Advanced Discovery Experimental Therapeutics (CADET) Central Manchester NHS Foundation Trust Manchester Academic Health Sciences Centre University of Manchester">(1);

    School of Biomedicine University of Manchester">(2);

    Max Planck Institute for Molecular Plant Physiology (MPIMP)">(3);

    Centre for Systems Biology University of Birmingham">(4);

    School of Biosciences University of Birmingham">(5);

    Institute of Infection Immunity and Inflammation College of Medical Veterinary and Life Sciences University of Glasgow">(6);

    Department of Biochemistry and Molecular Biology University of Melbourne">(7);

    Centre for Advanced Discovery Experimental Therapeutics (CADET) Central Manchester NHS Foundation Trust Manchester Academic Health Sciences Centre University of Manchester">(1);

    School of Biomedicine University of Manchester">(2);

    Institute of Molecular Cell and Systems Biology College of Medical Veterinary and Life Sciences University of Glasgow">(8);

    Groningen Bioinformatics Centre Groningen Biomolecular Sciences and Biotechnology Institute University of Groningen">(9);

    Division of Analytical Biosciences LACDR Leiden University">(10);

    Netherlands Metabolomics Centre LACDR Leiden University">(11);

    Manchester Centre for Integrative Systems Biology University of Manchester">(12);

    School of Chemistry Manchester Interdisciplinary Biocentre University of Manchester">(13);

    Department of Stress and Developmental Biology Leibniz Institute of Plant Biochemistry">(14);

    Max Planck Institute for Molecular Plant Physiology (MPIMP)">(3);

    Centre for Systems Biology University of Birmingham">(4);

    School of Biosciences University of Birmingham">(5);

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

    Capillary electrophoresis; Metabolomics; Metabolite identification; Structure elucidation; Mass spectrometry; Gas chromatography; Liquid chromatography; Ultra performance liquid chromatography; DIMS;

    机译:毛细管电泳;代谢组学代谢物鉴定;结构阐明;质谱;气相色谱法;液相色谱;超高效液相色谱;信息管理系统;

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