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Integrative Metabolomics Reveals Deep Tissue and Systemic Metabolic Remodeling in Glioblastoma

SIMPLE SUMMARY: This study aims to explore metabolic remodeling in plasma and tissue samples in patients with glioblastoma through an integrated targeted and untargeted metabolomics-based strategy. We report phospholipids, sphingomyelins, acylcarnitines, and acylglycerols as key impaired metabolic c...

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Autores principales: Gilard, Vianney, Ferey, Justine, Marguet, Florent, Fontanilles, Maxime, Ducatez, Franklin, Pilon, Carine, Lesueur, Céline, Pereira, Tony, Basset, Carole, Schmitz-Afonso, Isabelle, Di Fioré, Frédéric, Laquerrière, Annie, Afonso, Carlos, Derrey, Stéphane, Marret, Stéphane, Bekri, Soumeya, Tebani, Abdellah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8534284/
https://www.ncbi.nlm.nih.gov/pubmed/34680306
http://dx.doi.org/10.3390/cancers13205157
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author Gilard, Vianney
Ferey, Justine
Marguet, Florent
Fontanilles, Maxime
Ducatez, Franklin
Pilon, Carine
Lesueur, Céline
Pereira, Tony
Basset, Carole
Schmitz-Afonso, Isabelle
Di Fioré, Frédéric
Laquerrière, Annie
Afonso, Carlos
Derrey, Stéphane
Marret, Stéphane
Bekri, Soumeya
Tebani, Abdellah
author_facet Gilard, Vianney
Ferey, Justine
Marguet, Florent
Fontanilles, Maxime
Ducatez, Franklin
Pilon, Carine
Lesueur, Céline
Pereira, Tony
Basset, Carole
Schmitz-Afonso, Isabelle
Di Fioré, Frédéric
Laquerrière, Annie
Afonso, Carlos
Derrey, Stéphane
Marret, Stéphane
Bekri, Soumeya
Tebani, Abdellah
author_sort Gilard, Vianney
collection PubMed
description SIMPLE SUMMARY: This study aims to explore metabolic remodeling in plasma and tissue samples in patients with glioblastoma through an integrated targeted and untargeted metabolomics-based strategy. We report phospholipids, sphingomyelins, acylcarnitines, and acylglycerols as key impaired metabolic classes in glioblastoma. ABSTRACT: (1) Background: Glioblastoma is the most common malignant brain tumor in adults. Its etiology remains unknown in most cases. Glioblastoma pathogenesis consists of a progressive infiltration of the white matter by tumoral cells leading to progressive neurological deficit, epilepsy, and/or intracranial hypertension. The mean survival is between 15 to 17 months. Given this aggressive prognosis, there is an urgent need for a better understanding of the underlying mechanisms of glioblastoma to unveil new diagnostic strategies and therapeutic targets through a deeper understanding of its biology. (2) Methods: To systematically address this issue, we performed targeted and untargeted metabolomics-based investigations on both tissue and plasma samples from patients with glioblastoma. (3) Results: This study revealed 176 differentially expressed lipids and metabolites, 148 in plasma and 28 in tissue samples. Main biochemical classes include phospholipids, acylcarnitines, sphingomyelins, and triacylglycerols. Functional analyses revealed deep metabolic remodeling in glioblastoma lipids and energy substrates, which unveils the major role of lipids in tumor progression by modulating its own environment. (4) Conclusions: Overall, our study demonstrates in situ and systemic metabolic rewiring in glioblastoma that could shed light on its underlying biological plasticity and progression to inform diagnosis and/or therapeutic strategies.
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spelling pubmed-85342842021-10-23 Integrative Metabolomics Reveals Deep Tissue and Systemic Metabolic Remodeling in Glioblastoma Gilard, Vianney Ferey, Justine Marguet, Florent Fontanilles, Maxime Ducatez, Franklin Pilon, Carine Lesueur, Céline Pereira, Tony Basset, Carole Schmitz-Afonso, Isabelle Di Fioré, Frédéric Laquerrière, Annie Afonso, Carlos Derrey, Stéphane Marret, Stéphane Bekri, Soumeya Tebani, Abdellah Cancers (Basel) Article SIMPLE SUMMARY: This study aims to explore metabolic remodeling in plasma and tissue samples in patients with glioblastoma through an integrated targeted and untargeted metabolomics-based strategy. We report phospholipids, sphingomyelins, acylcarnitines, and acylglycerols as key impaired metabolic classes in glioblastoma. ABSTRACT: (1) Background: Glioblastoma is the most common malignant brain tumor in adults. Its etiology remains unknown in most cases. Glioblastoma pathogenesis consists of a progressive infiltration of the white matter by tumoral cells leading to progressive neurological deficit, epilepsy, and/or intracranial hypertension. The mean survival is between 15 to 17 months. Given this aggressive prognosis, there is an urgent need for a better understanding of the underlying mechanisms of glioblastoma to unveil new diagnostic strategies and therapeutic targets through a deeper understanding of its biology. (2) Methods: To systematically address this issue, we performed targeted and untargeted metabolomics-based investigations on both tissue and plasma samples from patients with glioblastoma. (3) Results: This study revealed 176 differentially expressed lipids and metabolites, 148 in plasma and 28 in tissue samples. Main biochemical classes include phospholipids, acylcarnitines, sphingomyelins, and triacylglycerols. Functional analyses revealed deep metabolic remodeling in glioblastoma lipids and energy substrates, which unveils the major role of lipids in tumor progression by modulating its own environment. (4) Conclusions: Overall, our study demonstrates in situ and systemic metabolic rewiring in glioblastoma that could shed light on its underlying biological plasticity and progression to inform diagnosis and/or therapeutic strategies. MDPI 2021-10-14 /pmc/articles/PMC8534284/ /pubmed/34680306 http://dx.doi.org/10.3390/cancers13205157 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gilard, Vianney
Ferey, Justine
Marguet, Florent
Fontanilles, Maxime
Ducatez, Franklin
Pilon, Carine
Lesueur, Céline
Pereira, Tony
Basset, Carole
Schmitz-Afonso, Isabelle
Di Fioré, Frédéric
Laquerrière, Annie
Afonso, Carlos
Derrey, Stéphane
Marret, Stéphane
Bekri, Soumeya
Tebani, Abdellah
Integrative Metabolomics Reveals Deep Tissue and Systemic Metabolic Remodeling in Glioblastoma
title Integrative Metabolomics Reveals Deep Tissue and Systemic Metabolic Remodeling in Glioblastoma
title_full Integrative Metabolomics Reveals Deep Tissue and Systemic Metabolic Remodeling in Glioblastoma
title_fullStr Integrative Metabolomics Reveals Deep Tissue and Systemic Metabolic Remodeling in Glioblastoma
title_full_unstemmed Integrative Metabolomics Reveals Deep Tissue and Systemic Metabolic Remodeling in Glioblastoma
title_short Integrative Metabolomics Reveals Deep Tissue and Systemic Metabolic Remodeling in Glioblastoma
title_sort integrative metabolomics reveals deep tissue and systemic metabolic remodeling in glioblastoma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8534284/
https://www.ncbi.nlm.nih.gov/pubmed/34680306
http://dx.doi.org/10.3390/cancers13205157
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