4.6 Review

Analytical Metabolomics and Applications in Health, Environmental and Food Science

期刊

CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY
卷 52, 期 4, 页码 712-734

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/10408347.2020.1823811

关键词

Metabolomics; metabolite; nuclear magnetic resonance; mass spectrometry; vibrational spectroscopy; applications

资金

  1. Programa de Cooperacion Interreg V-A Espana-Portugal (POCTEP) 2014-2020 [0181_NANOEATERS_01_E, 0377_IBERPHENOL_6_E]
  2. MICINN [RYC-2017-22891]
  3. Xunta de Galicia [ED481B-2019/096, ED481A-2019/0228, ED481A-2019/295]
  4. University of Vigo [ED481B-2019/096, ED481A-2019/0228, ED481A-2019/295]
  5. Xunta de Galicia through the Axudas Conecta Peme [IN852A 2018/58]
  6. company AlgaMar
  7. EcoChestnut Project (Erasmus+) [KA202]
  8. Ibero-American Program on Science and Technology (CYTED - AQUA-CIBUS) [P317RT0003]
  9. Bio Based Industries Joint Undertaking (JU) [888003]
  10. European Union's Horizon 2020 research and innovation program
  11. Bio Based Industries Consortium

向作者/读者索取更多资源

Metabolomics is a young field of knowledge that seeks to understand metabolites and their mechanisms of action. Various techniques such as NMR, MS, and VS are used to study the metabolome of biological samples. Each technique has its own advantages and limitations, and the choice depends on the research objectives and nature of the samples. Metabolomics has applications in environmental, food, and health sciences, and its growth is supported by advances in analytical techniques and integration with other omics.
Metabolomics is a young field of knowledge that arises linked to other omics such as genomics, transcriptomics, and proteomics. This discipline seeks to understand the performance of metabolites, identifying, quantifying them, and thus understanding its mechanism of action. This new branch of omics science shows high potential, due to its noninvasive character and its close relation with phenotype. Several techniques have been developed to study the metabolome of biological samples, fundamentally nuclear magnetic resonance (NMR), mass spectrometry (MS) and vibrational spectrometry (VS) or a combination of several techniques. These techniques are focused to separate, detect, characterize, and quantify metabolites, as well as elucidate their structures and their function on the metabolic pathways they are involved. However, due to the complexity of the metabolome, in most cases it is necessary to apply several of these techniques to understand completely the whole scenery. This review is aimed to offer a summary of the current knowledge of these analytical techniques for metabolomics and their application to different fields as environmental, food or health sciences. Each technique shows different advantages and drawbacks depending on their technical characteristics and limitations, some factors, such as the aim of the study or the nature of the biological sample will condition the choice. Regarding their applications, NMR has been employed specially to identify new compounds and elucidate structures. The use of MS has gained popularity because of its versatility, easiness to be coupled to separation techniques and its high sensitivity. Whereas VS is widely employed forin situstudies, due to its nondestructive character. Metabolomics applications in different science fields are growing each year, due to advances in analytical techniques and combination with other omics that allow to increase the comprehension of metabolic processes. Further development of analytical tools is necessary to continue exploiting all the possibilities of metabolomics.

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