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Multiparametric Longitudinal Profiling of RCAS-tva-Induced PDGFB-Driven Experimental Glioma

Glioblastomas are incurable primary brain tumors harboring a heterogeneous landscape of genetic and metabolic alterations. Longitudinal imaging by MRI and [(18)F]FET-PET measurements enable us to visualize the features of evolving tumors in a dynamic manner. Yet, close-meshed longitudinal imaging ti...

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Autores principales: Becker, Hannes, Castaneda-Vega, Salvador, Patzwaldt, Kristin, Przystal, Justyna M., Walter, Bianca, Michelotti, Filippo C., Canjuga, Denis, Tatagiba, Marcos, Pichler, Bernd, Beck, Susanne C., Holland, Eric C., la Fougère, Christian, Tabatabai, Ghazaleh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9688186/
https://www.ncbi.nlm.nih.gov/pubmed/36358353
http://dx.doi.org/10.3390/brainsci12111426
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author Becker, Hannes
Castaneda-Vega, Salvador
Patzwaldt, Kristin
Przystal, Justyna M.
Walter, Bianca
Michelotti, Filippo C.
Canjuga, Denis
Tatagiba, Marcos
Pichler, Bernd
Beck, Susanne C.
Holland, Eric C.
la Fougère, Christian
Tabatabai, Ghazaleh
author_facet Becker, Hannes
Castaneda-Vega, Salvador
Patzwaldt, Kristin
Przystal, Justyna M.
Walter, Bianca
Michelotti, Filippo C.
Canjuga, Denis
Tatagiba, Marcos
Pichler, Bernd
Beck, Susanne C.
Holland, Eric C.
la Fougère, Christian
Tabatabai, Ghazaleh
author_sort Becker, Hannes
collection PubMed
description Glioblastomas are incurable primary brain tumors harboring a heterogeneous landscape of genetic and metabolic alterations. Longitudinal imaging by MRI and [(18)F]FET-PET measurements enable us to visualize the features of evolving tumors in a dynamic manner. Yet, close-meshed longitudinal imaging time points for characterizing temporal and spatial metabolic alterations during tumor evolution in patients is not feasible because patients usually present with already established tumors. The replication-competent avian sarcoma-leukosis virus (RCAS)/tumor virus receptor-A (tva) system is a powerful preclinical glioma model offering a high grade of spatial and temporal control of somatic gene delivery in vivo. Consequently, here, we aimed at using MRI and [(18)F]FET-PET to identify typical neuroimaging characteristics of the platelet-derived growth factor B (PDGFB)-driven glioma model using the RCAS-tva system. Our study showed that this preclinical glioma model displays MRI and [(18)F]FET-PET features that highly resemble the corresponding established human disease, emphasizing the high translational relevance of this experimental model. Furthermore, our investigations unravel exponential growth dynamics and a model-specific tumor microenvironment, as assessed by histology and immunochemistry. Taken together, our study provides further insights into this preclinical model and advocates for the imaging-stratified design of preclinical therapeutic interventions.
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spelling pubmed-96881862022-11-25 Multiparametric Longitudinal Profiling of RCAS-tva-Induced PDGFB-Driven Experimental Glioma Becker, Hannes Castaneda-Vega, Salvador Patzwaldt, Kristin Przystal, Justyna M. Walter, Bianca Michelotti, Filippo C. Canjuga, Denis Tatagiba, Marcos Pichler, Bernd Beck, Susanne C. Holland, Eric C. la Fougère, Christian Tabatabai, Ghazaleh Brain Sci Article Glioblastomas are incurable primary brain tumors harboring a heterogeneous landscape of genetic and metabolic alterations. Longitudinal imaging by MRI and [(18)F]FET-PET measurements enable us to visualize the features of evolving tumors in a dynamic manner. Yet, close-meshed longitudinal imaging time points for characterizing temporal and spatial metabolic alterations during tumor evolution in patients is not feasible because patients usually present with already established tumors. The replication-competent avian sarcoma-leukosis virus (RCAS)/tumor virus receptor-A (tva) system is a powerful preclinical glioma model offering a high grade of spatial and temporal control of somatic gene delivery in vivo. Consequently, here, we aimed at using MRI and [(18)F]FET-PET to identify typical neuroimaging characteristics of the platelet-derived growth factor B (PDGFB)-driven glioma model using the RCAS-tva system. Our study showed that this preclinical glioma model displays MRI and [(18)F]FET-PET features that highly resemble the corresponding established human disease, emphasizing the high translational relevance of this experimental model. Furthermore, our investigations unravel exponential growth dynamics and a model-specific tumor microenvironment, as assessed by histology and immunochemistry. Taken together, our study provides further insights into this preclinical model and advocates for the imaging-stratified design of preclinical therapeutic interventions. MDPI 2022-10-24 /pmc/articles/PMC9688186/ /pubmed/36358353 http://dx.doi.org/10.3390/brainsci12111426 Text en © 2022 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
Becker, Hannes
Castaneda-Vega, Salvador
Patzwaldt, Kristin
Przystal, Justyna M.
Walter, Bianca
Michelotti, Filippo C.
Canjuga, Denis
Tatagiba, Marcos
Pichler, Bernd
Beck, Susanne C.
Holland, Eric C.
la Fougère, Christian
Tabatabai, Ghazaleh
Multiparametric Longitudinal Profiling of RCAS-tva-Induced PDGFB-Driven Experimental Glioma
title Multiparametric Longitudinal Profiling of RCAS-tva-Induced PDGFB-Driven Experimental Glioma
title_full Multiparametric Longitudinal Profiling of RCAS-tva-Induced PDGFB-Driven Experimental Glioma
title_fullStr Multiparametric Longitudinal Profiling of RCAS-tva-Induced PDGFB-Driven Experimental Glioma
title_full_unstemmed Multiparametric Longitudinal Profiling of RCAS-tva-Induced PDGFB-Driven Experimental Glioma
title_short Multiparametric Longitudinal Profiling of RCAS-tva-Induced PDGFB-Driven Experimental Glioma
title_sort multiparametric longitudinal profiling of rcas-tva-induced pdgfb-driven experimental glioma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9688186/
https://www.ncbi.nlm.nih.gov/pubmed/36358353
http://dx.doi.org/10.3390/brainsci12111426
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