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CT-2A neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression
Recently, several promising treatments for high-grade gliomas (HGGs) failed to provide significant benefit when translated from the preclinical setting to patients. Improving the animal models is fundamental to overcoming this translational gap. To address this need, we developed and comprehensively...
Autores principales: | , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Company of Biologists Ltd
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6777368/ https://www.ncbi.nlm.nih.gov/pubmed/31511246 http://dx.doi.org/10.1242/bio.044552 |
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author | Riva, Matteo Wouters, Roxanne Weerasekera, Akila Belderbos, Sarah Nittner, David Thal, Dietmar R. Baert, Thaïs Giovannoni, Roberto Gsell, Willy Himmelreich, Uwe Van Ranst, Marc Coosemans, An |
author_facet | Riva, Matteo Wouters, Roxanne Weerasekera, Akila Belderbos, Sarah Nittner, David Thal, Dietmar R. Baert, Thaïs Giovannoni, Roberto Gsell, Willy Himmelreich, Uwe Van Ranst, Marc Coosemans, An |
author_sort | Riva, Matteo |
collection | PubMed |
description | Recently, several promising treatments for high-grade gliomas (HGGs) failed to provide significant benefit when translated from the preclinical setting to patients. Improving the animal models is fundamental to overcoming this translational gap. To address this need, we developed and comprehensively characterized a new in vivo model based on the orthotopic implantation of CT-2A cells cultured in neurospheres (NS/CT-2A). Murine CT-2A methylcholanthrene-induced HGG cells (C57BL/6 background) were cultured in monolayers (ML) or NS and orthotopically inoculated in syngeneic animals. ML/CT-2A and NS/CT-2A tumors' characterization included the analysis of tumor growth, immune microenvironment, glioma stem cells (GSCs), vascularization and metabolites. The immuno-modulating properties of NS/CT-2A and ML/CT-2A cells on splenocytes were tested in vitro. Mice harboring NS/CT-2A tumors had a shorter survival than those harboring ML/CT-2A tumors (P=0.0033). Compared to standard ML/CT-2A tumors, NS/CT-2A tumors showed more abundant GSCs (P=0.0002 and 0.0770 for Nestin and CD133, respectively) and regulatory T cells (Tregs, P=0.0074), and a strong tendency towards an increased vascularization (P=0.0503). There were no significant differences in metabolites' composition between NS/ and ML/CT-2A tumors. In vitro, NS were able to drive splenocytes towards a more immunosuppressive status by reducing CD8(+) T cells (P=0.0354) and by promoting Tregs (P=0.0082), macrophages (MF, P=0.0019) and their M2 subset (P=0.0536). Compared to standard ML/CT-2A tumors, NS/CT-2A tumors show a more aggressive phenotype with increased immunosuppression and GSCs proliferation. Because of these specific features, the NS/CT-2A model represents a clinically relevant platform in the search for new HGG treatments aimed at reducing immunosuppression and eliminating GSCs. |
format | Online Article Text |
id | pubmed-6777368 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | The Company of Biologists Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-67773682019-10-07 CT-2A neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression Riva, Matteo Wouters, Roxanne Weerasekera, Akila Belderbos, Sarah Nittner, David Thal, Dietmar R. Baert, Thaïs Giovannoni, Roberto Gsell, Willy Himmelreich, Uwe Van Ranst, Marc Coosemans, An Biol Open Research Article Recently, several promising treatments for high-grade gliomas (HGGs) failed to provide significant benefit when translated from the preclinical setting to patients. Improving the animal models is fundamental to overcoming this translational gap. To address this need, we developed and comprehensively characterized a new in vivo model based on the orthotopic implantation of CT-2A cells cultured in neurospheres (NS/CT-2A). Murine CT-2A methylcholanthrene-induced HGG cells (C57BL/6 background) were cultured in monolayers (ML) or NS and orthotopically inoculated in syngeneic animals. ML/CT-2A and NS/CT-2A tumors' characterization included the analysis of tumor growth, immune microenvironment, glioma stem cells (GSCs), vascularization and metabolites. The immuno-modulating properties of NS/CT-2A and ML/CT-2A cells on splenocytes were tested in vitro. Mice harboring NS/CT-2A tumors had a shorter survival than those harboring ML/CT-2A tumors (P=0.0033). Compared to standard ML/CT-2A tumors, NS/CT-2A tumors showed more abundant GSCs (P=0.0002 and 0.0770 for Nestin and CD133, respectively) and regulatory T cells (Tregs, P=0.0074), and a strong tendency towards an increased vascularization (P=0.0503). There were no significant differences in metabolites' composition between NS/ and ML/CT-2A tumors. In vitro, NS were able to drive splenocytes towards a more immunosuppressive status by reducing CD8(+) T cells (P=0.0354) and by promoting Tregs (P=0.0082), macrophages (MF, P=0.0019) and their M2 subset (P=0.0536). Compared to standard ML/CT-2A tumors, NS/CT-2A tumors show a more aggressive phenotype with increased immunosuppression and GSCs proliferation. Because of these specific features, the NS/CT-2A model represents a clinically relevant platform in the search for new HGG treatments aimed at reducing immunosuppression and eliminating GSCs. The Company of Biologists Ltd 2019-09-11 /pmc/articles/PMC6777368/ /pubmed/31511246 http://dx.doi.org/10.1242/bio.044552 Text en © 2019. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/4.0This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed. |
spellingShingle | Research Article Riva, Matteo Wouters, Roxanne Weerasekera, Akila Belderbos, Sarah Nittner, David Thal, Dietmar R. Baert, Thaïs Giovannoni, Roberto Gsell, Willy Himmelreich, Uwe Van Ranst, Marc Coosemans, An CT-2A neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression |
title | CT-2A neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression |
title_full | CT-2A neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression |
title_fullStr | CT-2A neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression |
title_full_unstemmed | CT-2A neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression |
title_short | CT-2A neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression |
title_sort | ct-2a neurospheres-derived high-grade glioma in mice: a new model to address tumor stem cells and immunosuppression |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6777368/ https://www.ncbi.nlm.nih.gov/pubmed/31511246 http://dx.doi.org/10.1242/bio.044552 |
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