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Myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation

The most frequent variant of multiple sclerosis (MS) is the relapsing–remitting form, characterized by symptomatic phases followed by periods of total/partial recovery. Hence, it is possible that these patients can benefit from endogenous agents that control the inflammatory process and favor sponta...

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Autores principales: Melero‐Jerez, Carolina, Fernández‐Gómez, Beatriz, Lebrón‐Galán, Rafael, Ortega, Maria Cristina, Sánchez‐de Lara, Irene, Ojalvo, Ana Cristina, Clemente, Diego, de Castro, Fernando
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7894183/
https://www.ncbi.nlm.nih.gov/pubmed/33217041
http://dx.doi.org/10.1002/glia.23936
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author Melero‐Jerez, Carolina
Fernández‐Gómez, Beatriz
Lebrón‐Galán, Rafael
Ortega, Maria Cristina
Sánchez‐de Lara, Irene
Ojalvo, Ana Cristina
Clemente, Diego
de Castro, Fernando
author_facet Melero‐Jerez, Carolina
Fernández‐Gómez, Beatriz
Lebrón‐Galán, Rafael
Ortega, Maria Cristina
Sánchez‐de Lara, Irene
Ojalvo, Ana Cristina
Clemente, Diego
de Castro, Fernando
author_sort Melero‐Jerez, Carolina
collection PubMed
description The most frequent variant of multiple sclerosis (MS) is the relapsing–remitting form, characterized by symptomatic phases followed by periods of total/partial recovery. Hence, it is possible that these patients can benefit from endogenous agents that control the inflammatory process and favor spontaneous remyelination. In this context, there is increasing interest in the role of myeloid‐derived suppressor cells (MDSCs) during the clinical course of experimental autoimmune encephalomyelitis (EAE). MDSCs speed up infiltrated T‐cell anergy and apoptosis. In different animal models of MS, a milder disease course is related to higher presence/density of MDSCs in the periphery, and smaller demyelinated lesions in the central nervous system (CNS). These observations lead us to wonder whether MDSCs might not only exert an anti‐inflammatory effect but might also have direct influence on oligodendrocyte precursor cells (OPCs) and remyelination. In the present work, we reveal for the first time the relationship between OPCs and MDSCs in EAE, relationship that is guided by the distance from the inflammatory core. We describe the effects of MDSCs on survival, proliferation, as well as potent promoters of OPC differentiation toward mature phenotypes. We show for the first time that osteopontin is remarkably present in the analyzed secretome of MDSCs. The ablation of this cue from MDSCs‐secretome demonstrates that osteopontin is the main MDSC effector on these oligodendroglial cells. These data highlight a crucial pathogenic interaction between innate immunity and the CNS, opening ways to develop MDSC‐ and/or osteopontin‐based therapies to promote effective myelin preservation and repair in MS patients.
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spelling pubmed-78941832021-03-02 Myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation Melero‐Jerez, Carolina Fernández‐Gómez, Beatriz Lebrón‐Galán, Rafael Ortega, Maria Cristina Sánchez‐de Lara, Irene Ojalvo, Ana Cristina Clemente, Diego de Castro, Fernando Glia Research Articles The most frequent variant of multiple sclerosis (MS) is the relapsing–remitting form, characterized by symptomatic phases followed by periods of total/partial recovery. Hence, it is possible that these patients can benefit from endogenous agents that control the inflammatory process and favor spontaneous remyelination. In this context, there is increasing interest in the role of myeloid‐derived suppressor cells (MDSCs) during the clinical course of experimental autoimmune encephalomyelitis (EAE). MDSCs speed up infiltrated T‐cell anergy and apoptosis. In different animal models of MS, a milder disease course is related to higher presence/density of MDSCs in the periphery, and smaller demyelinated lesions in the central nervous system (CNS). These observations lead us to wonder whether MDSCs might not only exert an anti‐inflammatory effect but might also have direct influence on oligodendrocyte precursor cells (OPCs) and remyelination. In the present work, we reveal for the first time the relationship between OPCs and MDSCs in EAE, relationship that is guided by the distance from the inflammatory core. We describe the effects of MDSCs on survival, proliferation, as well as potent promoters of OPC differentiation toward mature phenotypes. We show for the first time that osteopontin is remarkably present in the analyzed secretome of MDSCs. The ablation of this cue from MDSCs‐secretome demonstrates that osteopontin is the main MDSC effector on these oligodendroglial cells. These data highlight a crucial pathogenic interaction between innate immunity and the CNS, opening ways to develop MDSC‐ and/or osteopontin‐based therapies to promote effective myelin preservation and repair in MS patients. John Wiley & Sons, Inc. 2020-11-20 2021-04 /pmc/articles/PMC7894183/ /pubmed/33217041 http://dx.doi.org/10.1002/glia.23936 Text en © 2020 The Authors. GLIA published by Wiley Periodicals LLC. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Melero‐Jerez, Carolina
Fernández‐Gómez, Beatriz
Lebrón‐Galán, Rafael
Ortega, Maria Cristina
Sánchez‐de Lara, Irene
Ojalvo, Ana Cristina
Clemente, Diego
de Castro, Fernando
Myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation
title Myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation
title_full Myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation
title_fullStr Myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation
title_full_unstemmed Myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation
title_short Myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation
title_sort myeloid‐derived suppressor cells support remyelination in a murine model of multiple sclerosis by promoting oligodendrocyte precursor cell survival, proliferation, and differentiation
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7894183/
https://www.ncbi.nlm.nih.gov/pubmed/33217041
http://dx.doi.org/10.1002/glia.23936
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