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Scaffold-Based (Matrigel™) 3D Culture Technique of Glioblastoma Recovers a Patient-like Immunosuppressive Phenotype

Conventional 2D cultures are commonly used in cancer research though they come with limitations such as the lack of microenvironment or reduced cell heterogeneity. In this study, we investigated in what respect a scaffold-based (Matrigel™) 3D culture technique can ameliorate the limitations of 2D cu...

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Autores principales: Braun, Frank K., Rothhammer-Hampl, Tanja, Lorenz, Julia, Pohl, Sandra, Menevse, Ayse-Nur, Vollmann-Zwerenz, Arabel, Bumes, Elisabeth, Büttner, Maren, Zoubaa, Saida, Proescholdt, Martin, Schmidt, Nils O., Hau, Peter, Beckhove, Philipp, Winner, Beate, Riemenschneider, Markus J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10378658/
https://www.ncbi.nlm.nih.gov/pubmed/37508520
http://dx.doi.org/10.3390/cells12141856
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author Braun, Frank K.
Rothhammer-Hampl, Tanja
Lorenz, Julia
Pohl, Sandra
Menevse, Ayse-Nur
Vollmann-Zwerenz, Arabel
Bumes, Elisabeth
Büttner, Maren
Zoubaa, Saida
Proescholdt, Martin
Schmidt, Nils O.
Hau, Peter
Beckhove, Philipp
Winner, Beate
Riemenschneider, Markus J.
author_facet Braun, Frank K.
Rothhammer-Hampl, Tanja
Lorenz, Julia
Pohl, Sandra
Menevse, Ayse-Nur
Vollmann-Zwerenz, Arabel
Bumes, Elisabeth
Büttner, Maren
Zoubaa, Saida
Proescholdt, Martin
Schmidt, Nils O.
Hau, Peter
Beckhove, Philipp
Winner, Beate
Riemenschneider, Markus J.
author_sort Braun, Frank K.
collection PubMed
description Conventional 2D cultures are commonly used in cancer research though they come with limitations such as the lack of microenvironment or reduced cell heterogeneity. In this study, we investigated in what respect a scaffold-based (Matrigel™) 3D culture technique can ameliorate the limitations of 2D cultures. NGS-based bulk and single-cell sequencing of matched pairs of 2D and 3D models showed an altered transcription of key immune regulatory genes in around 36% of 3D models, indicating the reoccurrence of an immune suppressive phenotype. Changes included the presentation of different HLA surface molecules as well as cellular stressors. We also investigated the 3D tumor organoids in a co-culture setting with tumor-infiltrating lymphocytes (TILs). Of note, lymphocyte-mediated cell killing appeared less effective in clearing 3D models than their 2D counterparts. IFN-γ release, as well as live cell staining and proliferation analysis, pointed toward an elevated resistance of 3D models. In conclusion, we found that the scaffold-based (Matrigel™) 3D culture technique affects the transcriptional profile in a subset of GBM models. Thus, these models allow for depicting clinically relevant aspects of tumor-immune interaction, with the potential to explore immunotherapeutic approaches in an easily accessible in vitro system.
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spelling pubmed-103786582023-07-29 Scaffold-Based (Matrigel™) 3D Culture Technique of Glioblastoma Recovers a Patient-like Immunosuppressive Phenotype Braun, Frank K. Rothhammer-Hampl, Tanja Lorenz, Julia Pohl, Sandra Menevse, Ayse-Nur Vollmann-Zwerenz, Arabel Bumes, Elisabeth Büttner, Maren Zoubaa, Saida Proescholdt, Martin Schmidt, Nils O. Hau, Peter Beckhove, Philipp Winner, Beate Riemenschneider, Markus J. Cells Article Conventional 2D cultures are commonly used in cancer research though they come with limitations such as the lack of microenvironment or reduced cell heterogeneity. In this study, we investigated in what respect a scaffold-based (Matrigel™) 3D culture technique can ameliorate the limitations of 2D cultures. NGS-based bulk and single-cell sequencing of matched pairs of 2D and 3D models showed an altered transcription of key immune regulatory genes in around 36% of 3D models, indicating the reoccurrence of an immune suppressive phenotype. Changes included the presentation of different HLA surface molecules as well as cellular stressors. We also investigated the 3D tumor organoids in a co-culture setting with tumor-infiltrating lymphocytes (TILs). Of note, lymphocyte-mediated cell killing appeared less effective in clearing 3D models than their 2D counterparts. IFN-γ release, as well as live cell staining and proliferation analysis, pointed toward an elevated resistance of 3D models. In conclusion, we found that the scaffold-based (Matrigel™) 3D culture technique affects the transcriptional profile in a subset of GBM models. Thus, these models allow for depicting clinically relevant aspects of tumor-immune interaction, with the potential to explore immunotherapeutic approaches in an easily accessible in vitro system. MDPI 2023-07-14 /pmc/articles/PMC10378658/ /pubmed/37508520 http://dx.doi.org/10.3390/cells12141856 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
Braun, Frank K.
Rothhammer-Hampl, Tanja
Lorenz, Julia
Pohl, Sandra
Menevse, Ayse-Nur
Vollmann-Zwerenz, Arabel
Bumes, Elisabeth
Büttner, Maren
Zoubaa, Saida
Proescholdt, Martin
Schmidt, Nils O.
Hau, Peter
Beckhove, Philipp
Winner, Beate
Riemenschneider, Markus J.
Scaffold-Based (Matrigel™) 3D Culture Technique of Glioblastoma Recovers a Patient-like Immunosuppressive Phenotype
title Scaffold-Based (Matrigel™) 3D Culture Technique of Glioblastoma Recovers a Patient-like Immunosuppressive Phenotype
title_full Scaffold-Based (Matrigel™) 3D Culture Technique of Glioblastoma Recovers a Patient-like Immunosuppressive Phenotype
title_fullStr Scaffold-Based (Matrigel™) 3D Culture Technique of Glioblastoma Recovers a Patient-like Immunosuppressive Phenotype
title_full_unstemmed Scaffold-Based (Matrigel™) 3D Culture Technique of Glioblastoma Recovers a Patient-like Immunosuppressive Phenotype
title_short Scaffold-Based (Matrigel™) 3D Culture Technique of Glioblastoma Recovers a Patient-like Immunosuppressive Phenotype
title_sort scaffold-based (matrigel™) 3d culture technique of glioblastoma recovers a patient-like immunosuppressive phenotype
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10378658/
https://www.ncbi.nlm.nih.gov/pubmed/37508520
http://dx.doi.org/10.3390/cells12141856
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