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Glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts

BACKGROUND: Glioblastoma (GBM) evades the immune system by creating an immune-suppressive tumor microenvironment (TME), where GBM-associated myeloid cells are geared towards tumor-supportive roles. However, it is unclear whether recruited myeloid cells are phenotypically and functionally identical....

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Autores principales: Yabo, Yahaya A., Moreno-Sanchez, Pilar M., Pires-Afonso, Yolanda, Kaoma, Tony, Kyriakis, Dimitrios, Grzyb, Kamil, Poovathingal, Suresh K., Poli, Aurélie, Scafidi, Andrea, Muller, Arnaud, Toth, Reka, Oudin, Anaïs, Klink, Barbara, Berchem, Guy, Berthold, Christophe, Hertel, Frank, Mittelbronn, Michel, Heiland, Dieter H., Skupin, Alexander, Nazarov, Petr V., Niclou, Simone P., Michelucci, Alessandro, Golebiewska, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10028830/
https://www.ncbi.nlm.nih.gov/pubmed/36945572
http://dx.doi.org/10.1101/2023.03.05.531162
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author Yabo, Yahaya A.
Moreno-Sanchez, Pilar M.
Pires-Afonso, Yolanda
Kaoma, Tony
Kyriakis, Dimitrios
Grzyb, Kamil
Poovathingal, Suresh K.
Poli, Aurélie
Scafidi, Andrea
Muller, Arnaud
Toth, Reka
Oudin, Anaïs
Klink, Barbara
Berchem, Guy
Berthold, Christophe
Hertel, Frank
Mittelbronn, Michel
Heiland, Dieter H.
Skupin, Alexander
Nazarov, Petr V.
Niclou, Simone P.
Michelucci, Alessandro
Golebiewska, Anna
author_facet Yabo, Yahaya A.
Moreno-Sanchez, Pilar M.
Pires-Afonso, Yolanda
Kaoma, Tony
Kyriakis, Dimitrios
Grzyb, Kamil
Poovathingal, Suresh K.
Poli, Aurélie
Scafidi, Andrea
Muller, Arnaud
Toth, Reka
Oudin, Anaïs
Klink, Barbara
Berchem, Guy
Berthold, Christophe
Hertel, Frank
Mittelbronn, Michel
Heiland, Dieter H.
Skupin, Alexander
Nazarov, Petr V.
Niclou, Simone P.
Michelucci, Alessandro
Golebiewska, Anna
author_sort Yabo, Yahaya A.
collection PubMed
description BACKGROUND: Glioblastoma (GBM) evades the immune system by creating an immune-suppressive tumor microenvironment (TME), where GBM-associated myeloid cells are geared towards tumor-supportive roles. However, it is unclear whether recruited myeloid cells are phenotypically and functionally identical. Here, we aim to understand the TME heterogeneity in GBM patients recapitulated in patient-derived orthotopic xenografts (PDOXs) and systematically characterize myeloid cell type identities at the molecular and functional level. METHODS: We applied single-cell RNA-sequencing and spatial transcriptomics, multicolor flow cytometry, immunohistochemistry and functional assays to examine the heterogeneity of the TME in GBM. Various GBM PDOXs representing different tumor phenotypes were analyzed and compared to the patient tumors, normal brain and mouse GL261 glioma model. RESULTS: PDOX models recapitulate the major components of the TME detected in human GBM, where tumor cells reciprocally interact with host cells to create a GBM-specific TME. We detect the most prominent transcriptomic adaptations in myeloid cells, which are largely of microglial origin. We reveal intra-tumoral heterogeneity of microglia and identify diverse phenotypic states across distinct GBM landscapes and tumor niches. GBM-educated microglia acquire dendritic cell-like features, displaying increased migration and phagocytosis. We further find novel microglial states expressing astrocytic and endothelial markers. Lastly, we show that temozolomide (TMZ) treatment leads to transcriptomic plasticity of both GBM tumor cells and adjacent TME components. CONCLUSIONS: Our data provide insight into the phenotypic adaptation of the heterogeneous TME instructed by GBM. We uncover that GBM-educated microglia are represented by various concomitant states, both in patients and recapitulated in PDOXs, displaying different pro- or anti-tumoral properties that are modulated by anti-neoplastic treatments, such as TMZ.
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spelling pubmed-100288302023-03-22 Glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts Yabo, Yahaya A. Moreno-Sanchez, Pilar M. Pires-Afonso, Yolanda Kaoma, Tony Kyriakis, Dimitrios Grzyb, Kamil Poovathingal, Suresh K. Poli, Aurélie Scafidi, Andrea Muller, Arnaud Toth, Reka Oudin, Anaïs Klink, Barbara Berchem, Guy Berthold, Christophe Hertel, Frank Mittelbronn, Michel Heiland, Dieter H. Skupin, Alexander Nazarov, Petr V. Niclou, Simone P. Michelucci, Alessandro Golebiewska, Anna bioRxiv Article BACKGROUND: Glioblastoma (GBM) evades the immune system by creating an immune-suppressive tumor microenvironment (TME), where GBM-associated myeloid cells are geared towards tumor-supportive roles. However, it is unclear whether recruited myeloid cells are phenotypically and functionally identical. Here, we aim to understand the TME heterogeneity in GBM patients recapitulated in patient-derived orthotopic xenografts (PDOXs) and systematically characterize myeloid cell type identities at the molecular and functional level. METHODS: We applied single-cell RNA-sequencing and spatial transcriptomics, multicolor flow cytometry, immunohistochemistry and functional assays to examine the heterogeneity of the TME in GBM. Various GBM PDOXs representing different tumor phenotypes were analyzed and compared to the patient tumors, normal brain and mouse GL261 glioma model. RESULTS: PDOX models recapitulate the major components of the TME detected in human GBM, where tumor cells reciprocally interact with host cells to create a GBM-specific TME. We detect the most prominent transcriptomic adaptations in myeloid cells, which are largely of microglial origin. We reveal intra-tumoral heterogeneity of microglia and identify diverse phenotypic states across distinct GBM landscapes and tumor niches. GBM-educated microglia acquire dendritic cell-like features, displaying increased migration and phagocytosis. We further find novel microglial states expressing astrocytic and endothelial markers. Lastly, we show that temozolomide (TMZ) treatment leads to transcriptomic plasticity of both GBM tumor cells and adjacent TME components. CONCLUSIONS: Our data provide insight into the phenotypic adaptation of the heterogeneous TME instructed by GBM. We uncover that GBM-educated microglia are represented by various concomitant states, both in patients and recapitulated in PDOXs, displaying different pro- or anti-tumoral properties that are modulated by anti-neoplastic treatments, such as TMZ. Cold Spring Harbor Laboratory 2023-03-06 /pmc/articles/PMC10028830/ /pubmed/36945572 http://dx.doi.org/10.1101/2023.03.05.531162 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Yabo, Yahaya A.
Moreno-Sanchez, Pilar M.
Pires-Afonso, Yolanda
Kaoma, Tony
Kyriakis, Dimitrios
Grzyb, Kamil
Poovathingal, Suresh K.
Poli, Aurélie
Scafidi, Andrea
Muller, Arnaud
Toth, Reka
Oudin, Anaïs
Klink, Barbara
Berchem, Guy
Berthold, Christophe
Hertel, Frank
Mittelbronn, Michel
Heiland, Dieter H.
Skupin, Alexander
Nazarov, Petr V.
Niclou, Simone P.
Michelucci, Alessandro
Golebiewska, Anna
Glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts
title Glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts
title_full Glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts
title_fullStr Glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts
title_full_unstemmed Glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts
title_short Glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts
title_sort glioblastoma-instructed microglia transit to heterogeneous phenotypic states with phagocytic and dendritic cell-like features in patient tumors and patient-derived orthotopic xenografts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10028830/
https://www.ncbi.nlm.nih.gov/pubmed/36945572
http://dx.doi.org/10.1101/2023.03.05.531162
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