Mass spectrometry‐based metabolomics

Метаболомика на основе масс-спектрометрии
Pavel A. Aronov, Bruce D. Hammock, Katja Dettmer
2006-08-18

mass spectrometry-based metabolomicsmetabolic fingerprintingmetabolite libraries and databasesmetabolomics bioinformaticssample preparation and separation
This review presents an overview of the dynamically developing field of mass spectrometry-based metabolomics. Metabolomics aims at the comprehensive and quantitative analysis of wide arrays of metabolites in biological samples. These numerous analytes have very diverse physico-chemical properties and occur at different abundance levels. Consequently, comprehensive metabolomics investigations are primarily a challenge for analytical chemistry and specifically mass spectrometry has vast potential as a tool for this type of investigation. Metabolomics require special approaches for sample preparation, separation, and mass spectrometric analysis. Current examples of those approaches are described in this review. It primarily focuses on metabolic fingerprinting, a technique that analyzes all detectable analytes in a given sample with subsequent classification of samples and identification of differentially expressed metabolites, which define the sample classes. To perform this complex task, data analysis tools, metabolite libraries, and databases are required. Therefore, recent advances in metabolomics bioinformatics are also discussed.
1
Comprehensive metabolomics poses major analytical chemistry challenges requiring specialized sample preparation, separation, and mass spectrometric approaches.
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Mass spectrometry is a highly suitable and promising analytical tool for comprehensive metabolomics due to its ability to handle diverse analytes and abundance ranges.
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Metabolic fingerprinting analyzes all detectable analytes to classify samples and identify differentially expressed metabolites that define sample classes.
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Successful metabolomics requires data analysis tools, metabolite libraries, and databases; recent advances in metabolomics bioinformatics are important enablers.
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The review describes current examples of mass spectrometry–based approaches for metabolomics, emphasizing methodological developments rather than a single standardized protocol.

Mass spectrometry-based metabolomics (comprehensive metabolite analysis in biological samples using mass spectrometry)

Approaches and challenges for comprehensive and quantitative analysis: sample preparation, separation, mass spectrometric analysis, metabolic fingerprinting for sample classification and differential metabolite identification, and related bioinformatics (data analysis tools, libraries, databases)

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2006-08-18
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Pavel A. Aronov
Bruce D. Hammock
Katja Dettmer
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