Cargando…

Programs, Origins, and Niches of Immunomodulatory Myeloid Cells in Gliomas

Gliomas are incurable malignancies notable for an immunosuppressive microenvironment with abundant myeloid cells whose immunomodulatory properties remain poorly defined. Here, utilizing scRNA-seq data for 183,062 myeloid cells from 85 human tumors, we discover that nearly all glioma-associated myelo...

Descripción completa

Detalles Bibliográficos
Autores principales: Miller, Tyler E., El Farran, Chadi A., Couturier, Charles P., Chen, Zeyu, D’Antonio, Joshua P., Verga, Julia, Villanueva, Martin A., Castro, L. Nicolas Gonzalez, Tong, Yuzhou Evelyn, Saadi, Tariq Al, Chiocca, Andrew N., Fischer, David S., Heiland, Dieter Henrik, Guerriero, Jennifer L., Petrecca, Kevin, Suva, Mario L., Shalek, Alex K., Bernstein, Bradley E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10634776/
https://www.ncbi.nlm.nih.gov/pubmed/37961527
http://dx.doi.org/10.1101/2023.10.24.563466
_version_ 1785146238715297792
author Miller, Tyler E.
El Farran, Chadi A.
Couturier, Charles P.
Chen, Zeyu
D’Antonio, Joshua P.
Verga, Julia
Villanueva, Martin A.
Castro, L. Nicolas Gonzalez
Tong, Yuzhou Evelyn
Saadi, Tariq Al
Chiocca, Andrew N.
Fischer, David S.
Heiland, Dieter Henrik
Guerriero, Jennifer L.
Petrecca, Kevin
Suva, Mario L.
Shalek, Alex K.
Bernstein, Bradley E.
author_facet Miller, Tyler E.
El Farran, Chadi A.
Couturier, Charles P.
Chen, Zeyu
D’Antonio, Joshua P.
Verga, Julia
Villanueva, Martin A.
Castro, L. Nicolas Gonzalez
Tong, Yuzhou Evelyn
Saadi, Tariq Al
Chiocca, Andrew N.
Fischer, David S.
Heiland, Dieter Henrik
Guerriero, Jennifer L.
Petrecca, Kevin
Suva, Mario L.
Shalek, Alex K.
Bernstein, Bradley E.
author_sort Miller, Tyler E.
collection PubMed
description Gliomas are incurable malignancies notable for an immunosuppressive microenvironment with abundant myeloid cells whose immunomodulatory properties remain poorly defined. Here, utilizing scRNA-seq data for 183,062 myeloid cells from 85 human tumors, we discover that nearly all glioma-associated myeloid cells express at least one of four immunomodulatory activity programs: Scavenger Immunosuppressive, C1Q Immunosuppressive, CXCR4 Inflammatory, and IL1B Inflammatory. All four programs are present in IDH1 mutant and wild-type gliomas and are expressed in macrophages, monocytes, and microglia whether of blood or resident myeloid cell origins. Integrating our scRNA-seq data with mitochondrial DNA-based lineage tracing, spatial transcriptomics, and organoid explant systems that model peripheral monocyte infiltration, we show that these programs are driven by microenvironmental cues and therapies rather than myeloid cell type, origin, or mutation status. The C1Q Immunosuppressive program is driven by routinely administered dexamethasone. The Scavenger Immunosuppressive program includes ligands with established roles in T-cell suppression, is induced in hypoxic regions, and is associated with immunotherapy resistance. Both immunosuppressive programs are less prevalent in lower-grade gliomas, which are instead enriched for the CXCR4 Inflammatory program. Our study provides a framework to understand immunomodulatory myeloid cells in glioma, and a foundation to develop more effective immunotherapies.
format Online
Article
Text
id pubmed-10634776
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cold Spring Harbor Laboratory
record_format MEDLINE/PubMed
spelling pubmed-106347762023-11-13 Programs, Origins, and Niches of Immunomodulatory Myeloid Cells in Gliomas Miller, Tyler E. El Farran, Chadi A. Couturier, Charles P. Chen, Zeyu D’Antonio, Joshua P. Verga, Julia Villanueva, Martin A. Castro, L. Nicolas Gonzalez Tong, Yuzhou Evelyn Saadi, Tariq Al Chiocca, Andrew N. Fischer, David S. Heiland, Dieter Henrik Guerriero, Jennifer L. Petrecca, Kevin Suva, Mario L. Shalek, Alex K. Bernstein, Bradley E. bioRxiv Article Gliomas are incurable malignancies notable for an immunosuppressive microenvironment with abundant myeloid cells whose immunomodulatory properties remain poorly defined. Here, utilizing scRNA-seq data for 183,062 myeloid cells from 85 human tumors, we discover that nearly all glioma-associated myeloid cells express at least one of four immunomodulatory activity programs: Scavenger Immunosuppressive, C1Q Immunosuppressive, CXCR4 Inflammatory, and IL1B Inflammatory. All four programs are present in IDH1 mutant and wild-type gliomas and are expressed in macrophages, monocytes, and microglia whether of blood or resident myeloid cell origins. Integrating our scRNA-seq data with mitochondrial DNA-based lineage tracing, spatial transcriptomics, and organoid explant systems that model peripheral monocyte infiltration, we show that these programs are driven by microenvironmental cues and therapies rather than myeloid cell type, origin, or mutation status. The C1Q Immunosuppressive program is driven by routinely administered dexamethasone. The Scavenger Immunosuppressive program includes ligands with established roles in T-cell suppression, is induced in hypoxic regions, and is associated with immunotherapy resistance. Both immunosuppressive programs are less prevalent in lower-grade gliomas, which are instead enriched for the CXCR4 Inflammatory program. Our study provides a framework to understand immunomodulatory myeloid cells in glioma, and a foundation to develop more effective immunotherapies. Cold Spring Harbor Laboratory 2023-10-27 /pmc/articles/PMC10634776/ /pubmed/37961527 http://dx.doi.org/10.1101/2023.10.24.563466 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Miller, Tyler E.
El Farran, Chadi A.
Couturier, Charles P.
Chen, Zeyu
D’Antonio, Joshua P.
Verga, Julia
Villanueva, Martin A.
Castro, L. Nicolas Gonzalez
Tong, Yuzhou Evelyn
Saadi, Tariq Al
Chiocca, Andrew N.
Fischer, David S.
Heiland, Dieter Henrik
Guerriero, Jennifer L.
Petrecca, Kevin
Suva, Mario L.
Shalek, Alex K.
Bernstein, Bradley E.
Programs, Origins, and Niches of Immunomodulatory Myeloid Cells in Gliomas
title Programs, Origins, and Niches of Immunomodulatory Myeloid Cells in Gliomas
title_full Programs, Origins, and Niches of Immunomodulatory Myeloid Cells in Gliomas
title_fullStr Programs, Origins, and Niches of Immunomodulatory Myeloid Cells in Gliomas
title_full_unstemmed Programs, Origins, and Niches of Immunomodulatory Myeloid Cells in Gliomas
title_short Programs, Origins, and Niches of Immunomodulatory Myeloid Cells in Gliomas
title_sort programs, origins, and niches of immunomodulatory myeloid cells in gliomas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10634776/
https://www.ncbi.nlm.nih.gov/pubmed/37961527
http://dx.doi.org/10.1101/2023.10.24.563466
work_keys_str_mv AT millertylere programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT elfarranchadia programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT couturiercharlesp programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT chenzeyu programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT dantoniojoshuap programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT vergajulia programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT villanuevamartina programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT castrolnicolasgonzalez programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT tongyuzhouevelyn programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT saaditariqal programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT chioccaandrewn programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT fischerdavids programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT heilanddieterhenrik programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT guerrierojenniferl programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT petreccakevin programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT suvamariol programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT shalekalexk programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas
AT bernsteinbradleye programsoriginsandnichesofimmunomodulatorymyeloidcellsingliomas