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Unveiling Metabolic Vulnerability and Plasticity of Human Osteosarcoma Stem and Differentiated Cells to Improve Cancer Therapy

Defining the metabolic phenotypes of cancer-initiating cells or cancer stem cells and of their differentiated counterparts might provide fundamental knowledge for improving or developing more effective therapies. In this context we extensively characterized the metabolic profiles of two osteosarcoma...

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Autores principales: Della Sala, Gerardo, Pacelli, Consiglia, Agriesti, Francesca, Laurenzana, Ilaria, Tucci, Francesco, Tamma, Mirko, Capitanio, Nazzareno, Piccoli, Claudia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773137/
https://www.ncbi.nlm.nih.gov/pubmed/35052705
http://dx.doi.org/10.3390/biomedicines10010028
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author Della Sala, Gerardo
Pacelli, Consiglia
Agriesti, Francesca
Laurenzana, Ilaria
Tucci, Francesco
Tamma, Mirko
Capitanio, Nazzareno
Piccoli, Claudia
author_facet Della Sala, Gerardo
Pacelli, Consiglia
Agriesti, Francesca
Laurenzana, Ilaria
Tucci, Francesco
Tamma, Mirko
Capitanio, Nazzareno
Piccoli, Claudia
author_sort Della Sala, Gerardo
collection PubMed
description Defining the metabolic phenotypes of cancer-initiating cells or cancer stem cells and of their differentiated counterparts might provide fundamental knowledge for improving or developing more effective therapies. In this context we extensively characterized the metabolic profiles of two osteosarcoma-derived cell lines, the 3AB-OS cancer stem cells and the parental MG-63 cells. To this aim Seahorse methodology-based metabolic flux analysis under a variety of conditions complemented with real time monitoring of cell growth by impedentiometric technique and confocal imaging were carried out. The results attained by selective substrate deprivation or metabolic pathway inhibition clearly show reliance of 3AB-OS on glycolysis and of MG-63 on glutamine oxidation. Treatment of the osteosarcoma cell lines with cisplatin resulted in additive inhibitory effects in MG-63 cells depleted of glutamine whereas it antagonized under selective withdrawal of glucose in 3AB-OS cells thereby manifesting a paradoxical pro-survival, cell-cycle arrest in S phase and antioxidant outcome. All together the results of this study highlight that the efficacy of specific metabolite starvation combined with chemotherapeutic drugs depends on the cancer compartment and suggest cautions in using it as a generalizable curative strategy.
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spelling pubmed-87731372022-01-21 Unveiling Metabolic Vulnerability and Plasticity of Human Osteosarcoma Stem and Differentiated Cells to Improve Cancer Therapy Della Sala, Gerardo Pacelli, Consiglia Agriesti, Francesca Laurenzana, Ilaria Tucci, Francesco Tamma, Mirko Capitanio, Nazzareno Piccoli, Claudia Biomedicines Article Defining the metabolic phenotypes of cancer-initiating cells or cancer stem cells and of their differentiated counterparts might provide fundamental knowledge for improving or developing more effective therapies. In this context we extensively characterized the metabolic profiles of two osteosarcoma-derived cell lines, the 3AB-OS cancer stem cells and the parental MG-63 cells. To this aim Seahorse methodology-based metabolic flux analysis under a variety of conditions complemented with real time monitoring of cell growth by impedentiometric technique and confocal imaging were carried out. The results attained by selective substrate deprivation or metabolic pathway inhibition clearly show reliance of 3AB-OS on glycolysis and of MG-63 on glutamine oxidation. Treatment of the osteosarcoma cell lines with cisplatin resulted in additive inhibitory effects in MG-63 cells depleted of glutamine whereas it antagonized under selective withdrawal of glucose in 3AB-OS cells thereby manifesting a paradoxical pro-survival, cell-cycle arrest in S phase and antioxidant outcome. All together the results of this study highlight that the efficacy of specific metabolite starvation combined with chemotherapeutic drugs depends on the cancer compartment and suggest cautions in using it as a generalizable curative strategy. MDPI 2021-12-23 /pmc/articles/PMC8773137/ /pubmed/35052705 http://dx.doi.org/10.3390/biomedicines10010028 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
Della Sala, Gerardo
Pacelli, Consiglia
Agriesti, Francesca
Laurenzana, Ilaria
Tucci, Francesco
Tamma, Mirko
Capitanio, Nazzareno
Piccoli, Claudia
Unveiling Metabolic Vulnerability and Plasticity of Human Osteosarcoma Stem and Differentiated Cells to Improve Cancer Therapy
title Unveiling Metabolic Vulnerability and Plasticity of Human Osteosarcoma Stem and Differentiated Cells to Improve Cancer Therapy
title_full Unveiling Metabolic Vulnerability and Plasticity of Human Osteosarcoma Stem and Differentiated Cells to Improve Cancer Therapy
title_fullStr Unveiling Metabolic Vulnerability and Plasticity of Human Osteosarcoma Stem and Differentiated Cells to Improve Cancer Therapy
title_full_unstemmed Unveiling Metabolic Vulnerability and Plasticity of Human Osteosarcoma Stem and Differentiated Cells to Improve Cancer Therapy
title_short Unveiling Metabolic Vulnerability and Plasticity of Human Osteosarcoma Stem and Differentiated Cells to Improve Cancer Therapy
title_sort unveiling metabolic vulnerability and plasticity of human osteosarcoma stem and differentiated cells to improve cancer therapy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773137/
https://www.ncbi.nlm.nih.gov/pubmed/35052705
http://dx.doi.org/10.3390/biomedicines10010028
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