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Bioenergetic Profiling in Glioblastoma Multiforme Patients with Different Clinical Outcomes

The accumulation of cell biomass is associated with dramatically increased bioenergetic and biosynthetic demand. Metabolic reprogramming, once thought as an epiphenomenon, currently relates to disease progression, also in response to extracellular fate-decisive signals. Glioblastoma multiforme patie...

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Autores principales: Bafiti, Vivi, Ouzounis, Sotiris, Siapi, Eleni, Grypari, Ioanna Maria, Theofanopoulos, Andreas, Panagiotopoulos, Vasilios, Zolota, Vasiliki, Kardamakis, Dimitrios, Katsila, Theodora
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051505/
https://www.ncbi.nlm.nih.gov/pubmed/36984801
http://dx.doi.org/10.3390/metabo13030362
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author Bafiti, Vivi
Ouzounis, Sotiris
Siapi, Eleni
Grypari, Ioanna Maria
Theofanopoulos, Andreas
Panagiotopoulos, Vasilios
Zolota, Vasiliki
Kardamakis, Dimitrios
Katsila, Theodora
author_facet Bafiti, Vivi
Ouzounis, Sotiris
Siapi, Eleni
Grypari, Ioanna Maria
Theofanopoulos, Andreas
Panagiotopoulos, Vasilios
Zolota, Vasiliki
Kardamakis, Dimitrios
Katsila, Theodora
author_sort Bafiti, Vivi
collection PubMed
description The accumulation of cell biomass is associated with dramatically increased bioenergetic and biosynthetic demand. Metabolic reprogramming, once thought as an epiphenomenon, currently relates to disease progression, also in response to extracellular fate-decisive signals. Glioblastoma multiforme patients often suffer misdiagnosis, short survival time, low quality of life, and poor disease management options. Today, tumor genetic testing and histological analysis guide diagnosis and treatment. We and others appreciate that metabolites complement translational biomarkers and molecular signatures in disease profiling and phenotyping. Herein, we coupled a mixed-methods content analysis to a mass spectrometry-based untargeted metabolomic analysis on plasma samples from glioblastoma multiforme patients to delineate the role of metabolic remodeling in biological plasticity and, hence, disease severity. Following data processing and analysis, we established a bioenergetic profile coordinated by the mitochondrial function and redox state, lipids, and energy substrates. Our findings show that epigenetic modulators are key players in glioblastoma multiforme cell metabolism, in particular when microRNAs are considered. We propose that biological plasticity in glioblastoma multiforme is a mechanism of adaptation and resistance to treatment which is eloquently revealed by bioenergetics.
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spelling pubmed-100515052023-03-30 Bioenergetic Profiling in Glioblastoma Multiforme Patients with Different Clinical Outcomes Bafiti, Vivi Ouzounis, Sotiris Siapi, Eleni Grypari, Ioanna Maria Theofanopoulos, Andreas Panagiotopoulos, Vasilios Zolota, Vasiliki Kardamakis, Dimitrios Katsila, Theodora Metabolites Article The accumulation of cell biomass is associated with dramatically increased bioenergetic and biosynthetic demand. Metabolic reprogramming, once thought as an epiphenomenon, currently relates to disease progression, also in response to extracellular fate-decisive signals. Glioblastoma multiforme patients often suffer misdiagnosis, short survival time, low quality of life, and poor disease management options. Today, tumor genetic testing and histological analysis guide diagnosis and treatment. We and others appreciate that metabolites complement translational biomarkers and molecular signatures in disease profiling and phenotyping. Herein, we coupled a mixed-methods content analysis to a mass spectrometry-based untargeted metabolomic analysis on plasma samples from glioblastoma multiforme patients to delineate the role of metabolic remodeling in biological plasticity and, hence, disease severity. Following data processing and analysis, we established a bioenergetic profile coordinated by the mitochondrial function and redox state, lipids, and energy substrates. Our findings show that epigenetic modulators are key players in glioblastoma multiforme cell metabolism, in particular when microRNAs are considered. We propose that biological plasticity in glioblastoma multiforme is a mechanism of adaptation and resistance to treatment which is eloquently revealed by bioenergetics. MDPI 2023-02-28 /pmc/articles/PMC10051505/ /pubmed/36984801 http://dx.doi.org/10.3390/metabo13030362 Text en © 2023 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
Bafiti, Vivi
Ouzounis, Sotiris
Siapi, Eleni
Grypari, Ioanna Maria
Theofanopoulos, Andreas
Panagiotopoulos, Vasilios
Zolota, Vasiliki
Kardamakis, Dimitrios
Katsila, Theodora
Bioenergetic Profiling in Glioblastoma Multiforme Patients with Different Clinical Outcomes
title Bioenergetic Profiling in Glioblastoma Multiforme Patients with Different Clinical Outcomes
title_full Bioenergetic Profiling in Glioblastoma Multiforme Patients with Different Clinical Outcomes
title_fullStr Bioenergetic Profiling in Glioblastoma Multiforme Patients with Different Clinical Outcomes
title_full_unstemmed Bioenergetic Profiling in Glioblastoma Multiforme Patients with Different Clinical Outcomes
title_short Bioenergetic Profiling in Glioblastoma Multiforme Patients with Different Clinical Outcomes
title_sort bioenergetic profiling in glioblastoma multiforme patients with different clinical outcomes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051505/
https://www.ncbi.nlm.nih.gov/pubmed/36984801
http://dx.doi.org/10.3390/metabo13030362
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