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A New Classification Method of Metastatic Cancers Using a (1)H-NMR-Based Approach: A Study Case of Melanoma, Breast, and Prostate Cancer Cell Lines

In this study, metastatic melanoma, breast, and prostate cancer cell lines were analyzed using a (1)H-NMR-based approach in order to investigate common features and differences of aggressive cancers metabolomes. For that purpose, (1)H-NMR spectra of both cellular extracts and culture media were comb...

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Autores principales: Schepkens, Corentin, Dallons, Matthieu, Dehairs, Jonas, Talebi, Ali, Jeandriens, Jérôme, Drossart, Lise-Marie, Auquier, Guillaume, Tagliatti, Vanessa, Swinnen, Johannes V., Colet, Jean-Marie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6918216/
https://www.ncbi.nlm.nih.gov/pubmed/31744229
http://dx.doi.org/10.3390/metabo9110281
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author Schepkens, Corentin
Dallons, Matthieu
Dehairs, Jonas
Talebi, Ali
Jeandriens, Jérôme
Drossart, Lise-Marie
Auquier, Guillaume
Tagliatti, Vanessa
Swinnen, Johannes V.
Colet, Jean-Marie
author_facet Schepkens, Corentin
Dallons, Matthieu
Dehairs, Jonas
Talebi, Ali
Jeandriens, Jérôme
Drossart, Lise-Marie
Auquier, Guillaume
Tagliatti, Vanessa
Swinnen, Johannes V.
Colet, Jean-Marie
author_sort Schepkens, Corentin
collection PubMed
description In this study, metastatic melanoma, breast, and prostate cancer cell lines were analyzed using a (1)H-NMR-based approach in order to investigate common features and differences of aggressive cancers metabolomes. For that purpose, (1)H-NMR spectra of both cellular extracts and culture media were combined with multivariate data analysis, bringing to light no less than 20 discriminant metabolites able to separate the metastatic metabolomes. The supervised approach succeeded in classifying the metastatic cell lines depending on their glucose metabolism, more glycolysis-oriented in the BRAF proto-oncogene mutated cell lines compared to the others. Other adaptive metabolic features also contributed to the classification, such as the increased total choline content (tCho), UDP-GlcNAc detection, and various changes in the glucose-related metabolites tree, giving additional information about the metastatic metabolome status and direction. Finally, common metabolic features detected via (1)H-NMR in the studied cancer cell lines are discussed, identifying the glycolytic pathway, Kennedy’s pathway, and the glutaminolysis as potential and common targets in metastasis, opening up new avenues to cure cancer.
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spelling pubmed-69182162019-12-24 A New Classification Method of Metastatic Cancers Using a (1)H-NMR-Based Approach: A Study Case of Melanoma, Breast, and Prostate Cancer Cell Lines Schepkens, Corentin Dallons, Matthieu Dehairs, Jonas Talebi, Ali Jeandriens, Jérôme Drossart, Lise-Marie Auquier, Guillaume Tagliatti, Vanessa Swinnen, Johannes V. Colet, Jean-Marie Metabolites Article In this study, metastatic melanoma, breast, and prostate cancer cell lines were analyzed using a (1)H-NMR-based approach in order to investigate common features and differences of aggressive cancers metabolomes. For that purpose, (1)H-NMR spectra of both cellular extracts and culture media were combined with multivariate data analysis, bringing to light no less than 20 discriminant metabolites able to separate the metastatic metabolomes. The supervised approach succeeded in classifying the metastatic cell lines depending on their glucose metabolism, more glycolysis-oriented in the BRAF proto-oncogene mutated cell lines compared to the others. Other adaptive metabolic features also contributed to the classification, such as the increased total choline content (tCho), UDP-GlcNAc detection, and various changes in the glucose-related metabolites tree, giving additional information about the metastatic metabolome status and direction. Finally, common metabolic features detected via (1)H-NMR in the studied cancer cell lines are discussed, identifying the glycolytic pathway, Kennedy’s pathway, and the glutaminolysis as potential and common targets in metastasis, opening up new avenues to cure cancer. MDPI 2019-11-17 /pmc/articles/PMC6918216/ /pubmed/31744229 http://dx.doi.org/10.3390/metabo9110281 Text en © 2019 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
Schepkens, Corentin
Dallons, Matthieu
Dehairs, Jonas
Talebi, Ali
Jeandriens, Jérôme
Drossart, Lise-Marie
Auquier, Guillaume
Tagliatti, Vanessa
Swinnen, Johannes V.
Colet, Jean-Marie
A New Classification Method of Metastatic Cancers Using a (1)H-NMR-Based Approach: A Study Case of Melanoma, Breast, and Prostate Cancer Cell Lines
title A New Classification Method of Metastatic Cancers Using a (1)H-NMR-Based Approach: A Study Case of Melanoma, Breast, and Prostate Cancer Cell Lines
title_full A New Classification Method of Metastatic Cancers Using a (1)H-NMR-Based Approach: A Study Case of Melanoma, Breast, and Prostate Cancer Cell Lines
title_fullStr A New Classification Method of Metastatic Cancers Using a (1)H-NMR-Based Approach: A Study Case of Melanoma, Breast, and Prostate Cancer Cell Lines
title_full_unstemmed A New Classification Method of Metastatic Cancers Using a (1)H-NMR-Based Approach: A Study Case of Melanoma, Breast, and Prostate Cancer Cell Lines
title_short A New Classification Method of Metastatic Cancers Using a (1)H-NMR-Based Approach: A Study Case of Melanoma, Breast, and Prostate Cancer Cell Lines
title_sort new classification method of metastatic cancers using a (1)h-nmr-based approach: a study case of melanoma, breast, and prostate cancer cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6918216/
https://www.ncbi.nlm.nih.gov/pubmed/31744229
http://dx.doi.org/10.3390/metabo9110281
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