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Human Monocyte-Derived Suppressor Cell Supernatant Induces Immunoregulatory Effects and Mitigates xenoGvHD

Recently developed cell-based therapies have shown potential for graft-versus-host disease (GvHD) mitigation. Our team previously developed a protocol to generate human monocyte-derived suppressor Cells (HuMoSC), a subpopulation of CD33+ suppressor cells of monocytic origin. CD33+HuMoSC successfully...

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Autores principales: Gérard, Claire, Thébault, Marine, Lamarthée, Baptiste, Genet, Coraline, Cattin, Florine, Brazdova, Andréa, Janikashvili, Nona, Cladière, Claudie, Ciudad, Marion, Ouandji, Séthi, Ghesquière, Thibault, Greigert, Hélène, Tinel, Claire, Adotevi, Olivier, Saas, Philippe, Samson, Maxime, Audia, Sylvain, Bonnotte, Bernard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8957111/
https://www.ncbi.nlm.nih.gov/pubmed/35345675
http://dx.doi.org/10.3389/fimmu.2022.827712
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author Gérard, Claire
Thébault, Marine
Lamarthée, Baptiste
Genet, Coraline
Cattin, Florine
Brazdova, Andréa
Janikashvili, Nona
Cladière, Claudie
Ciudad, Marion
Ouandji, Séthi
Ghesquière, Thibault
Greigert, Hélène
Tinel, Claire
Adotevi, Olivier
Saas, Philippe
Samson, Maxime
Audia, Sylvain
Bonnotte, Bernard
author_facet Gérard, Claire
Thébault, Marine
Lamarthée, Baptiste
Genet, Coraline
Cattin, Florine
Brazdova, Andréa
Janikashvili, Nona
Cladière, Claudie
Ciudad, Marion
Ouandji, Séthi
Ghesquière, Thibault
Greigert, Hélène
Tinel, Claire
Adotevi, Olivier
Saas, Philippe
Samson, Maxime
Audia, Sylvain
Bonnotte, Bernard
author_sort Gérard, Claire
collection PubMed
description Recently developed cell-based therapies have shown potential for graft-versus-host disease (GvHD) mitigation. Our team previously developed a protocol to generate human monocyte-derived suppressor Cells (HuMoSC), a subpopulation of CD33+ suppressor cells of monocytic origin. CD33+HuMoSC successfully reduced xenoGvHD severity in NOD/SCID/IL-2Rγc(-/-) (NSG) mice. While CD33+ HuMoSC culture supernatant inhibits T cell activation and proliferation, the recovery of CD33+ HuMoSC immunosuppressive cells and the subsequent production of their supernatant is limited. An attractive solution would be to use both the CD33+ and the large number of CD14+ cells derived from our protocol. Here, we assessed the immunoregulatory properties of the CD14+HuMoSC supernatant and demonstrated that it inhibited both CD4 and CD8 T cell proliferation and decreased CD8 cytotoxicity. In vivo, injection of CD14+HuMoSC supernatant reduced xenoGvHD in NSG mice. Furthermore, CD14+HuMoSC supernatant maintained its immunoregulatory properties in an inflammatory environment. Proteomic and multiplex analyses revealed the presence of immunosuppressive proteins such as GPNMB, galectin-3 and IL-1R(A) Finally, CD14+HuMoSC supernatant can be produced using good manufacturing practices and be used as complement to current immunosuppressive drugs. CD14+HuMoSC supernatant is thus a promising therapy for preventing GvHD. 
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spelling pubmed-89571112022-03-27 Human Monocyte-Derived Suppressor Cell Supernatant Induces Immunoregulatory Effects and Mitigates xenoGvHD Gérard, Claire Thébault, Marine Lamarthée, Baptiste Genet, Coraline Cattin, Florine Brazdova, Andréa Janikashvili, Nona Cladière, Claudie Ciudad, Marion Ouandji, Séthi Ghesquière, Thibault Greigert, Hélène Tinel, Claire Adotevi, Olivier Saas, Philippe Samson, Maxime Audia, Sylvain Bonnotte, Bernard Front Immunol Immunology Recently developed cell-based therapies have shown potential for graft-versus-host disease (GvHD) mitigation. Our team previously developed a protocol to generate human monocyte-derived suppressor Cells (HuMoSC), a subpopulation of CD33+ suppressor cells of monocytic origin. CD33+HuMoSC successfully reduced xenoGvHD severity in NOD/SCID/IL-2Rγc(-/-) (NSG) mice. While CD33+ HuMoSC culture supernatant inhibits T cell activation and proliferation, the recovery of CD33+ HuMoSC immunosuppressive cells and the subsequent production of their supernatant is limited. An attractive solution would be to use both the CD33+ and the large number of CD14+ cells derived from our protocol. Here, we assessed the immunoregulatory properties of the CD14+HuMoSC supernatant and demonstrated that it inhibited both CD4 and CD8 T cell proliferation and decreased CD8 cytotoxicity. In vivo, injection of CD14+HuMoSC supernatant reduced xenoGvHD in NSG mice. Furthermore, CD14+HuMoSC supernatant maintained its immunoregulatory properties in an inflammatory environment. Proteomic and multiplex analyses revealed the presence of immunosuppressive proteins such as GPNMB, galectin-3 and IL-1R(A) Finally, CD14+HuMoSC supernatant can be produced using good manufacturing practices and be used as complement to current immunosuppressive drugs. CD14+HuMoSC supernatant is thus a promising therapy for preventing GvHD.  Frontiers Media S.A. 2022-03-08 /pmc/articles/PMC8957111/ /pubmed/35345675 http://dx.doi.org/10.3389/fimmu.2022.827712 Text en Copyright © 2022 Gérard, Thébault, Lamarthée, Genet, Cattin, Brazdova, Janikashvili, Cladière, Ciudad, Ouandji, Ghesquière, Greigert, Tinel, Adotevi, Saas, Samson, Audia and Bonnotte 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(s) 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
Gérard, Claire
Thébault, Marine
Lamarthée, Baptiste
Genet, Coraline
Cattin, Florine
Brazdova, Andréa
Janikashvili, Nona
Cladière, Claudie
Ciudad, Marion
Ouandji, Séthi
Ghesquière, Thibault
Greigert, Hélène
Tinel, Claire
Adotevi, Olivier
Saas, Philippe
Samson, Maxime
Audia, Sylvain
Bonnotte, Bernard
Human Monocyte-Derived Suppressor Cell Supernatant Induces Immunoregulatory Effects and Mitigates xenoGvHD
title Human Monocyte-Derived Suppressor Cell Supernatant Induces Immunoregulatory Effects and Mitigates xenoGvHD
title_full Human Monocyte-Derived Suppressor Cell Supernatant Induces Immunoregulatory Effects and Mitigates xenoGvHD
title_fullStr Human Monocyte-Derived Suppressor Cell Supernatant Induces Immunoregulatory Effects and Mitigates xenoGvHD
title_full_unstemmed Human Monocyte-Derived Suppressor Cell Supernatant Induces Immunoregulatory Effects and Mitigates xenoGvHD
title_short Human Monocyte-Derived Suppressor Cell Supernatant Induces Immunoregulatory Effects and Mitigates xenoGvHD
title_sort human monocyte-derived suppressor cell supernatant induces immunoregulatory effects and mitigates xenogvhd
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8957111/
https://www.ncbi.nlm.nih.gov/pubmed/35345675
http://dx.doi.org/10.3389/fimmu.2022.827712
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