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An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples

The functional understanding of metabolic changes requires both a significant investigation into metabolic pathways, as enabled by global metabolomics and lipidomics approaches, and the comprehensive and accurate exploration of specific key pathways. To answer this pivotal challenge, we propose an o...

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Autores principales: Villaret-Cazadamont, Joran, Poupin, Nathalie, Tournadre, Anthony, Batut, Aurélie, Gales, Lara, Zalko, Daniel, Cabaton, Nicolas J., Bellvert, Floriant, Bertrand-Michel, Justine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7570216/
https://www.ncbi.nlm.nih.gov/pubmed/32825089
http://dx.doi.org/10.3390/metabo10090338
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author Villaret-Cazadamont, Joran
Poupin, Nathalie
Tournadre, Anthony
Batut, Aurélie
Gales, Lara
Zalko, Daniel
Cabaton, Nicolas J.
Bellvert, Floriant
Bertrand-Michel, Justine
author_facet Villaret-Cazadamont, Joran
Poupin, Nathalie
Tournadre, Anthony
Batut, Aurélie
Gales, Lara
Zalko, Daniel
Cabaton, Nicolas J.
Bellvert, Floriant
Bertrand-Michel, Justine
author_sort Villaret-Cazadamont, Joran
collection PubMed
description The functional understanding of metabolic changes requires both a significant investigation into metabolic pathways, as enabled by global metabolomics and lipidomics approaches, and the comprehensive and accurate exploration of specific key pathways. To answer this pivotal challenge, we propose an optimized approach, which combines an efficient sample preparation, aiming to reduce the variability, with a biphasic extraction method, where both the aqueous and organic phases of the same sample are used for mass spectrometry analyses. We demonstrated that this double extraction protocol allows working with one single sample without decreasing the metabolome and lipidome coverage. It enables the targeted analysis of 40 polar metabolites and 82 lipids, together with the absolute quantification of 32 polar metabolites, providing comprehensive coverage and quantitative measurement of the metabolites involved in central carbon energy pathways. With this method, we evidenced modulations of several lipids, amino acids, and energy metabolites in HepaRG cells exposed to fenofibrate, a model hepatic toxicant, and metabolic modulator. This new protocol is particularly relevant for experiments involving limited amounts of biological material and for functional metabolic explorations and is thus of particular interest for studies aiming to decipher the effects and modes of action of metabolic disrupting compounds.
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spelling pubmed-75702162020-10-28 An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples Villaret-Cazadamont, Joran Poupin, Nathalie Tournadre, Anthony Batut, Aurélie Gales, Lara Zalko, Daniel Cabaton, Nicolas J. Bellvert, Floriant Bertrand-Michel, Justine Metabolites Article The functional understanding of metabolic changes requires both a significant investigation into metabolic pathways, as enabled by global metabolomics and lipidomics approaches, and the comprehensive and accurate exploration of specific key pathways. To answer this pivotal challenge, we propose an optimized approach, which combines an efficient sample preparation, aiming to reduce the variability, with a biphasic extraction method, where both the aqueous and organic phases of the same sample are used for mass spectrometry analyses. We demonstrated that this double extraction protocol allows working with one single sample without decreasing the metabolome and lipidome coverage. It enables the targeted analysis of 40 polar metabolites and 82 lipids, together with the absolute quantification of 32 polar metabolites, providing comprehensive coverage and quantitative measurement of the metabolites involved in central carbon energy pathways. With this method, we evidenced modulations of several lipids, amino acids, and energy metabolites in HepaRG cells exposed to fenofibrate, a model hepatic toxicant, and metabolic modulator. This new protocol is particularly relevant for experiments involving limited amounts of biological material and for functional metabolic explorations and is thus of particular interest for studies aiming to decipher the effects and modes of action of metabolic disrupting compounds. MDPI 2020-08-19 /pmc/articles/PMC7570216/ /pubmed/32825089 http://dx.doi.org/10.3390/metabo10090338 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Villaret-Cazadamont, Joran
Poupin, Nathalie
Tournadre, Anthony
Batut, Aurélie
Gales, Lara
Zalko, Daniel
Cabaton, Nicolas J.
Bellvert, Floriant
Bertrand-Michel, Justine
An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples
title An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples
title_full An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples
title_fullStr An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples
title_full_unstemmed An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples
title_short An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples
title_sort optimized dual extraction method for the simultaneous and accurate analysis of polar metabolites and lipids carried out on single biological samples
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7570216/
https://www.ncbi.nlm.nih.gov/pubmed/32825089
http://dx.doi.org/10.3390/metabo10090338
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