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Different Mechanisms Underlie the Metabolic Response of GBM Stem-Like Cells to Ionizing Radiation: Biological and MRS Studies on Effects of Photons and Carbon Ions

Glioblastoma multiforme (GBM) is a malignant primary brain tumor with very poor prognosis, high recurrence rate, and failure of chemo-radiotherapy, mainly due to a small fraction of cells with stem-like properties (GSCs). To study the mechanisms of GSCs resistance to radiation, two GSC lines, named...

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Autores principales: Palma, Alessandra, Grande, Sveva, Ricci-Vitiani, Lucia, Luciani, Anna Maria, Buccarelli, Mariachiara, Biffoni, Mauro, Dini, Valentina, Cirrone, Giuseppe A. P., Ciocca, Mario, Guidoni, Laura, Pallini, Roberto, Viti, Vincenza, Rosi, Antonella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7404344/
https://www.ncbi.nlm.nih.gov/pubmed/32708312
http://dx.doi.org/10.3390/ijms21145167
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author Palma, Alessandra
Grande, Sveva
Ricci-Vitiani, Lucia
Luciani, Anna Maria
Buccarelli, Mariachiara
Biffoni, Mauro
Dini, Valentina
Cirrone, Giuseppe A. P.
Ciocca, Mario
Guidoni, Laura
Pallini, Roberto
Viti, Vincenza
Rosi, Antonella
author_facet Palma, Alessandra
Grande, Sveva
Ricci-Vitiani, Lucia
Luciani, Anna Maria
Buccarelli, Mariachiara
Biffoni, Mauro
Dini, Valentina
Cirrone, Giuseppe A. P.
Ciocca, Mario
Guidoni, Laura
Pallini, Roberto
Viti, Vincenza
Rosi, Antonella
author_sort Palma, Alessandra
collection PubMed
description Glioblastoma multiforme (GBM) is a malignant primary brain tumor with very poor prognosis, high recurrence rate, and failure of chemo-radiotherapy, mainly due to a small fraction of cells with stem-like properties (GSCs). To study the mechanisms of GSCs resistance to radiation, two GSC lines, named line #1 and line #83, with different metabolic patterns and clinical outcome, were irradiated with photon beams and carbon ions and assessed by (1)H Magnetic Resonance Spectroscopy (MRS). Both irradiation modalities induced early cytotoxic effects in line #1 with small effects on cell cycle, whereas a proliferative G2/M cytostatic block was observed in line #83. MR spectroscopy signals from mobile lipids (ML) increased in spectra of line #1 after photon and C-ion irradiation with effects on lipid unsaturation level, whereas no effects were detected in line #83 spectra. Gamma-Aminobutyric Acid (GABA), glutamic acid (glu) and Phosphocreatine (pCr) signals showed a significant variation only for line #1 after carbon ion irradiation. Glucose (glc) level and lactate (Lac) extrusion behaved differently in the two lines. Our findings suggest that the differences in irradiation response of GSCs #1 and #83 lines are likely attributable to their different metabolic fingerprint rather than to the different radiation types.
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spelling pubmed-74043442020-08-18 Different Mechanisms Underlie the Metabolic Response of GBM Stem-Like Cells to Ionizing Radiation: Biological and MRS Studies on Effects of Photons and Carbon Ions Palma, Alessandra Grande, Sveva Ricci-Vitiani, Lucia Luciani, Anna Maria Buccarelli, Mariachiara Biffoni, Mauro Dini, Valentina Cirrone, Giuseppe A. P. Ciocca, Mario Guidoni, Laura Pallini, Roberto Viti, Vincenza Rosi, Antonella Int J Mol Sci Article Glioblastoma multiforme (GBM) is a malignant primary brain tumor with very poor prognosis, high recurrence rate, and failure of chemo-radiotherapy, mainly due to a small fraction of cells with stem-like properties (GSCs). To study the mechanisms of GSCs resistance to radiation, two GSC lines, named line #1 and line #83, with different metabolic patterns and clinical outcome, were irradiated with photon beams and carbon ions and assessed by (1)H Magnetic Resonance Spectroscopy (MRS). Both irradiation modalities induced early cytotoxic effects in line #1 with small effects on cell cycle, whereas a proliferative G2/M cytostatic block was observed in line #83. MR spectroscopy signals from mobile lipids (ML) increased in spectra of line #1 after photon and C-ion irradiation with effects on lipid unsaturation level, whereas no effects were detected in line #83 spectra. Gamma-Aminobutyric Acid (GABA), glutamic acid (glu) and Phosphocreatine (pCr) signals showed a significant variation only for line #1 after carbon ion irradiation. Glucose (glc) level and lactate (Lac) extrusion behaved differently in the two lines. Our findings suggest that the differences in irradiation response of GSCs #1 and #83 lines are likely attributable to their different metabolic fingerprint rather than to the different radiation types. MDPI 2020-07-21 /pmc/articles/PMC7404344/ /pubmed/32708312 http://dx.doi.org/10.3390/ijms21145167 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
Palma, Alessandra
Grande, Sveva
Ricci-Vitiani, Lucia
Luciani, Anna Maria
Buccarelli, Mariachiara
Biffoni, Mauro
Dini, Valentina
Cirrone, Giuseppe A. P.
Ciocca, Mario
Guidoni, Laura
Pallini, Roberto
Viti, Vincenza
Rosi, Antonella
Different Mechanisms Underlie the Metabolic Response of GBM Stem-Like Cells to Ionizing Radiation: Biological and MRS Studies on Effects of Photons and Carbon Ions
title Different Mechanisms Underlie the Metabolic Response of GBM Stem-Like Cells to Ionizing Radiation: Biological and MRS Studies on Effects of Photons and Carbon Ions
title_full Different Mechanisms Underlie the Metabolic Response of GBM Stem-Like Cells to Ionizing Radiation: Biological and MRS Studies on Effects of Photons and Carbon Ions
title_fullStr Different Mechanisms Underlie the Metabolic Response of GBM Stem-Like Cells to Ionizing Radiation: Biological and MRS Studies on Effects of Photons and Carbon Ions
title_full_unstemmed Different Mechanisms Underlie the Metabolic Response of GBM Stem-Like Cells to Ionizing Radiation: Biological and MRS Studies on Effects of Photons and Carbon Ions
title_short Different Mechanisms Underlie the Metabolic Response of GBM Stem-Like Cells to Ionizing Radiation: Biological and MRS Studies on Effects of Photons and Carbon Ions
title_sort different mechanisms underlie the metabolic response of gbm stem-like cells to ionizing radiation: biological and mrs studies on effects of photons and carbon ions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7404344/
https://www.ncbi.nlm.nih.gov/pubmed/32708312
http://dx.doi.org/10.3390/ijms21145167
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