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Development of an LC-MS Targeted Metabolomics Methodology to Study Proline Metabolism in Mammalian Cell Cultures

A growing interest in metabolomics studies of cultured cells requires development not only untargeted methods capable of fingerprinting the complete metabolite profile but also targeted methods enabling the precise and accurate determination of a selected group of metabolites. Proline metabolism aff...

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Autores principales: Klupczynska, Agnieszka, Misiura, Magdalena, Miltyk, Wojciech, Oscilowska, Ilona, Palka, Jerzy, Kokot, Zenon J., Matysiak, Jan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7587214/
https://www.ncbi.nlm.nih.gov/pubmed/33053735
http://dx.doi.org/10.3390/molecules25204639
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author Klupczynska, Agnieszka
Misiura, Magdalena
Miltyk, Wojciech
Oscilowska, Ilona
Palka, Jerzy
Kokot, Zenon J.
Matysiak, Jan
author_facet Klupczynska, Agnieszka
Misiura, Magdalena
Miltyk, Wojciech
Oscilowska, Ilona
Palka, Jerzy
Kokot, Zenon J.
Matysiak, Jan
author_sort Klupczynska, Agnieszka
collection PubMed
description A growing interest in metabolomics studies of cultured cells requires development not only untargeted methods capable of fingerprinting the complete metabolite profile but also targeted methods enabling the precise and accurate determination of a selected group of metabolites. Proline metabolism affects many crucial processes at the cellular level, including collagen biosynthesis, redox balance, energetic processes as well as intracellular signaling. The study aimed to develop a robust and easy-to-use targeted metabolomics method for the determination of the intracellular level of proline and the other two amino acids closely related to proline metabolism: glutamic acid and arginine. The method employs hydrophilic interaction liquid chromatography followed by high-resolution, accurate-mass mass spectrometry for reliable detection and quantification of the target metabolites in cell lysates. The sample preparation consisted of quenching by the addition of ice-cold methanol and subsequent cell scraping into a quenching solution. The method validation showed acceptable linearity (r > 0.995), precision (%RSD < 15%), and accuracy (88.5–108.5%). Pilot research using HaCaT spontaneously immortalized human keratinocytes in a model for wound healing was performed, indicating the usefulness of the method in studies of disturbances in proline metabolism. The developed method addresses the need to determine the intracellular concentration of three key amino acids and can be used routinely in targeted mammalian cell culture metabolomics research.
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spelling pubmed-75872142020-10-29 Development of an LC-MS Targeted Metabolomics Methodology to Study Proline Metabolism in Mammalian Cell Cultures Klupczynska, Agnieszka Misiura, Magdalena Miltyk, Wojciech Oscilowska, Ilona Palka, Jerzy Kokot, Zenon J. Matysiak, Jan Molecules Article A growing interest in metabolomics studies of cultured cells requires development not only untargeted methods capable of fingerprinting the complete metabolite profile but also targeted methods enabling the precise and accurate determination of a selected group of metabolites. Proline metabolism affects many crucial processes at the cellular level, including collagen biosynthesis, redox balance, energetic processes as well as intracellular signaling. The study aimed to develop a robust and easy-to-use targeted metabolomics method for the determination of the intracellular level of proline and the other two amino acids closely related to proline metabolism: glutamic acid and arginine. The method employs hydrophilic interaction liquid chromatography followed by high-resolution, accurate-mass mass spectrometry for reliable detection and quantification of the target metabolites in cell lysates. The sample preparation consisted of quenching by the addition of ice-cold methanol and subsequent cell scraping into a quenching solution. The method validation showed acceptable linearity (r > 0.995), precision (%RSD < 15%), and accuracy (88.5–108.5%). Pilot research using HaCaT spontaneously immortalized human keratinocytes in a model for wound healing was performed, indicating the usefulness of the method in studies of disturbances in proline metabolism. The developed method addresses the need to determine the intracellular concentration of three key amino acids and can be used routinely in targeted mammalian cell culture metabolomics research. MDPI 2020-10-12 /pmc/articles/PMC7587214/ /pubmed/33053735 http://dx.doi.org/10.3390/molecules25204639 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
Klupczynska, Agnieszka
Misiura, Magdalena
Miltyk, Wojciech
Oscilowska, Ilona
Palka, Jerzy
Kokot, Zenon J.
Matysiak, Jan
Development of an LC-MS Targeted Metabolomics Methodology to Study Proline Metabolism in Mammalian Cell Cultures
title Development of an LC-MS Targeted Metabolomics Methodology to Study Proline Metabolism in Mammalian Cell Cultures
title_full Development of an LC-MS Targeted Metabolomics Methodology to Study Proline Metabolism in Mammalian Cell Cultures
title_fullStr Development of an LC-MS Targeted Metabolomics Methodology to Study Proline Metabolism in Mammalian Cell Cultures
title_full_unstemmed Development of an LC-MS Targeted Metabolomics Methodology to Study Proline Metabolism in Mammalian Cell Cultures
title_short Development of an LC-MS Targeted Metabolomics Methodology to Study Proline Metabolism in Mammalian Cell Cultures
title_sort development of an lc-ms targeted metabolomics methodology to study proline metabolism in mammalian cell cultures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7587214/
https://www.ncbi.nlm.nih.gov/pubmed/33053735
http://dx.doi.org/10.3390/molecules25204639
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