Cargando…

Myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by PI3K and Wnt signaling pathways

Imbalanced immune responses are a prominent hallmark of cancer and autoimmunity. Myeloid cells can be overly suppressive, inhibiting protective immune responses or inactive not controlling autoreactive immune cells. Understanding the mechanisms that induce suppressive myeloid cells, such as myeloid-...

Descripción completa

Detalles Bibliográficos
Autores principales: van Wigcheren, Glenn F., Cuenca-Escalona, Jorge, Stelloo, Suzan, Brake, Julia, Peeters, Eline, Horrevorts, Sophie.K., Frölich, Siebren, Ramos-Tomillero, Iván, Wesseling-Rozendaal, Yvonne, van Herpen, Carla M.L., van de Stolpe, Anja, Vermeulen, Michiel, de Vries, I. Jolanda M., Figdor, Carl G., Flórez-Grau, Georgina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10628850/
https://www.ncbi.nlm.nih.gov/pubmed/37739035
http://dx.doi.org/10.1016/j.jbc.2023.105276
_version_ 1785131848365506560
author van Wigcheren, Glenn F.
Cuenca-Escalona, Jorge
Stelloo, Suzan
Brake, Julia
Peeters, Eline
Horrevorts, Sophie.K.
Frölich, Siebren
Ramos-Tomillero, Iván
Wesseling-Rozendaal, Yvonne
van Herpen, Carla M.L.
van de Stolpe, Anja
Vermeulen, Michiel
de Vries, I. Jolanda M.
Figdor, Carl G.
Flórez-Grau, Georgina
author_facet van Wigcheren, Glenn F.
Cuenca-Escalona, Jorge
Stelloo, Suzan
Brake, Julia
Peeters, Eline
Horrevorts, Sophie.K.
Frölich, Siebren
Ramos-Tomillero, Iván
Wesseling-Rozendaal, Yvonne
van Herpen, Carla M.L.
van de Stolpe, Anja
Vermeulen, Michiel
de Vries, I. Jolanda M.
Figdor, Carl G.
Flórez-Grau, Georgina
author_sort van Wigcheren, Glenn F.
collection PubMed
description Imbalanced immune responses are a prominent hallmark of cancer and autoimmunity. Myeloid cells can be overly suppressive, inhibiting protective immune responses or inactive not controlling autoreactive immune cells. Understanding the mechanisms that induce suppressive myeloid cells, such as myeloid-derived suppressor cells (MDSCs) and tolerogenic dendritic cells (TolDCs), can facilitate the development of immune-restoring therapeutic approaches. MDSCs are a major barrier for effective cancer immunotherapy by suppressing antitumor immune responses in cancer patients. TolDCs are administered to patients to promote immune tolerance with the intent to control autoimmune disease. Here, we investigated the development and suppressive/tolerogenic activity of human MDSCs and TolDCs to gain insight into signaling pathways that drive immunosuppression in these different myeloid subsets. Moreover, monocyte-derived MDSCs (M-MDSCs) generated in vitro were compared to M-MDSCs isolated from head-and-neck squamous cell carcinoma patients. PI3K-AKT signaling was identified as being crucial for the induction of human M-MDSCs. PI3K inhibition prevented the downregulation of HLA-DR and the upregulation of reactive oxygen species and MerTK. In addition, we show that the suppressive activity of dexamethasone-induced TolDCs is induced by β-catenin–dependent Wnt signaling. The identification of PI3K-AKT and Wnt signal transduction pathways as respective inducers of the immunomodulatory capacity of M-MDSCs and TolDCs provides opportunities to overcome suppressive myeloid cells in cancer patients and optimize therapeutic application of TolDCs. Lastly, the observed similarities between generated- and patient-derived M-MDSCs support the use of in vitro–generated M-MDSCs as powerful model to investigate the functionality of human MDSCs.
format Online
Article
Text
id pubmed-10628850
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-106288502023-11-08 Myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by PI3K and Wnt signaling pathways van Wigcheren, Glenn F. Cuenca-Escalona, Jorge Stelloo, Suzan Brake, Julia Peeters, Eline Horrevorts, Sophie.K. Frölich, Siebren Ramos-Tomillero, Iván Wesseling-Rozendaal, Yvonne van Herpen, Carla M.L. van de Stolpe, Anja Vermeulen, Michiel de Vries, I. Jolanda M. Figdor, Carl G. Flórez-Grau, Georgina J Biol Chem Research Article Imbalanced immune responses are a prominent hallmark of cancer and autoimmunity. Myeloid cells can be overly suppressive, inhibiting protective immune responses or inactive not controlling autoreactive immune cells. Understanding the mechanisms that induce suppressive myeloid cells, such as myeloid-derived suppressor cells (MDSCs) and tolerogenic dendritic cells (TolDCs), can facilitate the development of immune-restoring therapeutic approaches. MDSCs are a major barrier for effective cancer immunotherapy by suppressing antitumor immune responses in cancer patients. TolDCs are administered to patients to promote immune tolerance with the intent to control autoimmune disease. Here, we investigated the development and suppressive/tolerogenic activity of human MDSCs and TolDCs to gain insight into signaling pathways that drive immunosuppression in these different myeloid subsets. Moreover, monocyte-derived MDSCs (M-MDSCs) generated in vitro were compared to M-MDSCs isolated from head-and-neck squamous cell carcinoma patients. PI3K-AKT signaling was identified as being crucial for the induction of human M-MDSCs. PI3K inhibition prevented the downregulation of HLA-DR and the upregulation of reactive oxygen species and MerTK. In addition, we show that the suppressive activity of dexamethasone-induced TolDCs is induced by β-catenin–dependent Wnt signaling. The identification of PI3K-AKT and Wnt signal transduction pathways as respective inducers of the immunomodulatory capacity of M-MDSCs and TolDCs provides opportunities to overcome suppressive myeloid cells in cancer patients and optimize therapeutic application of TolDCs. Lastly, the observed similarities between generated- and patient-derived M-MDSCs support the use of in vitro–generated M-MDSCs as powerful model to investigate the functionality of human MDSCs. American Society for Biochemistry and Molecular Biology 2023-09-20 /pmc/articles/PMC10628850/ /pubmed/37739035 http://dx.doi.org/10.1016/j.jbc.2023.105276 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
van Wigcheren, Glenn F.
Cuenca-Escalona, Jorge
Stelloo, Suzan
Brake, Julia
Peeters, Eline
Horrevorts, Sophie.K.
Frölich, Siebren
Ramos-Tomillero, Iván
Wesseling-Rozendaal, Yvonne
van Herpen, Carla M.L.
van de Stolpe, Anja
Vermeulen, Michiel
de Vries, I. Jolanda M.
Figdor, Carl G.
Flórez-Grau, Georgina
Myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by PI3K and Wnt signaling pathways
title Myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by PI3K and Wnt signaling pathways
title_full Myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by PI3K and Wnt signaling pathways
title_fullStr Myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by PI3K and Wnt signaling pathways
title_full_unstemmed Myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by PI3K and Wnt signaling pathways
title_short Myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by PI3K and Wnt signaling pathways
title_sort myeloid-derived suppressor cells and tolerogenic dendritic cells are distinctively induced by pi3k and wnt signaling pathways
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10628850/
https://www.ncbi.nlm.nih.gov/pubmed/37739035
http://dx.doi.org/10.1016/j.jbc.2023.105276
work_keys_str_mv AT vanwigcherenglennf myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT cuencaescalonajorge myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT stelloosuzan myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT brakejulia myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT peeterseline myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT horrevortssophiek myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT frolichsiebren myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT ramostomilleroivan myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT wesselingrozendaalyvonne myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT vanherpencarlaml myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT vandestolpeanja myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT vermeulenmichiel myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT devriesijolandam myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT figdorcarlg myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways
AT florezgraugeorgina myeloidderivedsuppressorcellsandtolerogenicdendriticcellsaredistinctivelyinducedbypi3kandwntsignalingpathways