Cargando…

Extracellular Purine Metabolism Is the Switchboard of Immunosuppressive Macrophages and a Novel Target to Treat Diseases With Macrophage Imbalances

If misregulated, macrophage (Mϕ)–T cell interactions can drive chronic inflammation thereby causing diseases, such as rheumatoid arthritis (RA). We report that in a proinflammatory environment, granulocyte-Mϕ (GM-CSF)- and Mϕ colony-stimulating factor (M-CSF)-dependent Mϕs have dichotomous effects o...

Descripción completa

Detalles Bibliográficos
Autores principales: Ohradanova-Repic, Anna, Machacek, Christian, Charvet, Celine, Lager, Franck, Le Roux, Delphine, Platzer, René, Leksa, Vladimir, Mitulovic, Goran, Burkard, Thomas R., Zlabinger, Gerhard J., Fischer, Michael B., Feuillet, Vincent, Renault, Gilles, Blüml, Stephan, Benko, Miroslav, Suchanek, Miloslav, Huppa, Johannes B., Matsuyama, Takami, Cavaco-Paulo, Artur, Bismuth, Georges, Stockinger, Hannes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5946032/
https://www.ncbi.nlm.nih.gov/pubmed/29780382
http://dx.doi.org/10.3389/fimmu.2018.00852
_version_ 1783322110023696384
author Ohradanova-Repic, Anna
Machacek, Christian
Charvet, Celine
Lager, Franck
Le Roux, Delphine
Platzer, René
Leksa, Vladimir
Mitulovic, Goran
Burkard, Thomas R.
Zlabinger, Gerhard J.
Fischer, Michael B.
Feuillet, Vincent
Renault, Gilles
Blüml, Stephan
Benko, Miroslav
Suchanek, Miloslav
Huppa, Johannes B.
Matsuyama, Takami
Cavaco-Paulo, Artur
Bismuth, Georges
Stockinger, Hannes
author_facet Ohradanova-Repic, Anna
Machacek, Christian
Charvet, Celine
Lager, Franck
Le Roux, Delphine
Platzer, René
Leksa, Vladimir
Mitulovic, Goran
Burkard, Thomas R.
Zlabinger, Gerhard J.
Fischer, Michael B.
Feuillet, Vincent
Renault, Gilles
Blüml, Stephan
Benko, Miroslav
Suchanek, Miloslav
Huppa, Johannes B.
Matsuyama, Takami
Cavaco-Paulo, Artur
Bismuth, Georges
Stockinger, Hannes
author_sort Ohradanova-Repic, Anna
collection PubMed
description If misregulated, macrophage (Mϕ)–T cell interactions can drive chronic inflammation thereby causing diseases, such as rheumatoid arthritis (RA). We report that in a proinflammatory environment, granulocyte-Mϕ (GM-CSF)- and Mϕ colony-stimulating factor (M-CSF)-dependent Mϕs have dichotomous effects on T cell activity. While GM-CSF-dependent Mϕs show a highly stimulatory activity typical for M1 Mϕs, M-CSF-dependent Mϕs, marked by folate receptor β (FRβ), adopt an immunosuppressive M2 phenotype. We find the latter to be caused by the purinergic pathway that directs release of extracellular ATP and its conversion to immunosuppressive adenosine by co-expressed CD39 and CD73. Since we observed a misbalance between immunosuppressive and immunostimulatory Mϕs in human and murine arthritic joints, we devised a new strategy for RA treatment based on targeted delivery of a novel methotrexate (MTX) formulation to the immunosuppressive FRβ(+)CD39(+)CD73(+) Mϕs, which boosts adenosine production and curtails the dominance of proinflammatory Mϕs. In contrast to untargeted MTX, this approach leads to potent alleviation of inflammation in the murine arthritis model. In conclusion, we define the Mϕ extracellular purine metabolism as a novel checkpoint in Mϕ cell fate decision-making and an attractive target to control pathological Mϕs in immune-mediated diseases.
format Online
Article
Text
id pubmed-5946032
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-59460322018-05-18 Extracellular Purine Metabolism Is the Switchboard of Immunosuppressive Macrophages and a Novel Target to Treat Diseases With Macrophage Imbalances Ohradanova-Repic, Anna Machacek, Christian Charvet, Celine Lager, Franck Le Roux, Delphine Platzer, René Leksa, Vladimir Mitulovic, Goran Burkard, Thomas R. Zlabinger, Gerhard J. Fischer, Michael B. Feuillet, Vincent Renault, Gilles Blüml, Stephan Benko, Miroslav Suchanek, Miloslav Huppa, Johannes B. Matsuyama, Takami Cavaco-Paulo, Artur Bismuth, Georges Stockinger, Hannes Front Immunol Immunology If misregulated, macrophage (Mϕ)–T cell interactions can drive chronic inflammation thereby causing diseases, such as rheumatoid arthritis (RA). We report that in a proinflammatory environment, granulocyte-Mϕ (GM-CSF)- and Mϕ colony-stimulating factor (M-CSF)-dependent Mϕs have dichotomous effects on T cell activity. While GM-CSF-dependent Mϕs show a highly stimulatory activity typical for M1 Mϕs, M-CSF-dependent Mϕs, marked by folate receptor β (FRβ), adopt an immunosuppressive M2 phenotype. We find the latter to be caused by the purinergic pathway that directs release of extracellular ATP and its conversion to immunosuppressive adenosine by co-expressed CD39 and CD73. Since we observed a misbalance between immunosuppressive and immunostimulatory Mϕs in human and murine arthritic joints, we devised a new strategy for RA treatment based on targeted delivery of a novel methotrexate (MTX) formulation to the immunosuppressive FRβ(+)CD39(+)CD73(+) Mϕs, which boosts adenosine production and curtails the dominance of proinflammatory Mϕs. In contrast to untargeted MTX, this approach leads to potent alleviation of inflammation in the murine arthritis model. In conclusion, we define the Mϕ extracellular purine metabolism as a novel checkpoint in Mϕ cell fate decision-making and an attractive target to control pathological Mϕs in immune-mediated diseases. Frontiers Media S.A. 2018-04-27 /pmc/articles/PMC5946032/ /pubmed/29780382 http://dx.doi.org/10.3389/fimmu.2018.00852 Text en Copyright © 2018 Ohradanova-Repic, Machacek, Charvet, Lager, Le Roux, Platzer, Leksa, Mitulovic, Burkard, Zlabinger, Fischer, Feuillet, Renault, Blüml, Benko, Suchanek, Huppa, Matsuyama, Cavaco-Paulo, Bismuth and Stockinger. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Ohradanova-Repic, Anna
Machacek, Christian
Charvet, Celine
Lager, Franck
Le Roux, Delphine
Platzer, René
Leksa, Vladimir
Mitulovic, Goran
Burkard, Thomas R.
Zlabinger, Gerhard J.
Fischer, Michael B.
Feuillet, Vincent
Renault, Gilles
Blüml, Stephan
Benko, Miroslav
Suchanek, Miloslav
Huppa, Johannes B.
Matsuyama, Takami
Cavaco-Paulo, Artur
Bismuth, Georges
Stockinger, Hannes
Extracellular Purine Metabolism Is the Switchboard of Immunosuppressive Macrophages and a Novel Target to Treat Diseases With Macrophage Imbalances
title Extracellular Purine Metabolism Is the Switchboard of Immunosuppressive Macrophages and a Novel Target to Treat Diseases With Macrophage Imbalances
title_full Extracellular Purine Metabolism Is the Switchboard of Immunosuppressive Macrophages and a Novel Target to Treat Diseases With Macrophage Imbalances
title_fullStr Extracellular Purine Metabolism Is the Switchboard of Immunosuppressive Macrophages and a Novel Target to Treat Diseases With Macrophage Imbalances
title_full_unstemmed Extracellular Purine Metabolism Is the Switchboard of Immunosuppressive Macrophages and a Novel Target to Treat Diseases With Macrophage Imbalances
title_short Extracellular Purine Metabolism Is the Switchboard of Immunosuppressive Macrophages and a Novel Target to Treat Diseases With Macrophage Imbalances
title_sort extracellular purine metabolism is the switchboard of immunosuppressive macrophages and a novel target to treat diseases with macrophage imbalances
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5946032/
https://www.ncbi.nlm.nih.gov/pubmed/29780382
http://dx.doi.org/10.3389/fimmu.2018.00852
work_keys_str_mv AT ohradanovarepicanna extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT machacekchristian extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT charvetceline extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT lagerfranck extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT lerouxdelphine extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT platzerrene extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT leksavladimir extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT mitulovicgoran extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT burkardthomasr extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT zlabingergerhardj extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT fischermichaelb extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT feuilletvincent extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT renaultgilles extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT blumlstephan extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT benkomiroslav extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT suchanekmiloslav extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT huppajohannesb extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT matsuyamatakami extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT cavacopauloartur extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT bismuthgeorges extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances
AT stockingerhannes extracellularpurinemetabolismistheswitchboardofimmunosuppressivemacrophagesandanoveltargettotreatdiseaseswithmacrophageimbalances