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M1 Macrophage Derived Exosomes Aggravate Experimental Autoimmune Neuritis via Modulating Th1 Response

Guillain–Barré syndrome (GBS), an immune-mediated disorder affecting the peripheral nervous system, is the most common and severe acute paralytic neuropathy. GBS remains to be potentially life-threatening and disabling despite the increasing availability of current standard therapeutic regimens. The...

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Autores principales: Du, Tong, Yang, Chun-Lin, Ge, Meng-Ru, Liu, Ying, Zhang, Peng, Li, Heng, Li, Xiao-Li, Li, Tao, Liu, Yu-Dong, Dou, Ying-Chun, Yang, Bing, Duan, Rui-Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7390899/
https://www.ncbi.nlm.nih.gov/pubmed/32793234
http://dx.doi.org/10.3389/fimmu.2020.01603
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author Du, Tong
Yang, Chun-Lin
Ge, Meng-Ru
Liu, Ying
Zhang, Peng
Li, Heng
Li, Xiao-Li
Li, Tao
Liu, Yu-Dong
Dou, Ying-Chun
Yang, Bing
Duan, Rui-Sheng
author_facet Du, Tong
Yang, Chun-Lin
Ge, Meng-Ru
Liu, Ying
Zhang, Peng
Li, Heng
Li, Xiao-Li
Li, Tao
Liu, Yu-Dong
Dou, Ying-Chun
Yang, Bing
Duan, Rui-Sheng
author_sort Du, Tong
collection PubMed
description Guillain–Barré syndrome (GBS), an immune-mediated disorder affecting the peripheral nervous system, is the most common and severe acute paralytic neuropathy. GBS remains to be potentially life-threatening and disabling despite the increasing availability of current standard therapeutic regimens. Therefore, more targeted therapeutics are in urgent need. Macrophages have been implicated in both initiation and resolution of experimental autoimmune neuritis (EAN), the animal model of GBS, but the exact mechanisms remain to be elucidated. It has been increasingly appreciated that exosomes, a type of extracellular vesicles (EVs), are of importance for functions of macrophages. Nevertheless, the roles of macrophage derived exosomes in EAN/GBS remain unclear. Here we determined the effects of macrophage derived exosomes on the development of EAN in Lewis rats. M1 macrophage derived exosomes (M1 exosomes) were found to aggravate EAN via boosting Th1 and Th17 response, while M2 macrophage derived exosomes (M2 exosomes) showed potentials to mitigate disease severity via a mechanism bypassing Th1 and Th17 response. Besides, both M1 and M2 exosomes increased germinal center reactions in EAN. Further in vitro studies confirmed that M1 exosomes could directly promote IFN-γ production in T cells and M2 exosomes were not capable of inhibiting IFN-γ expression. Thus, our data identify a previously undescribed means that M1 macrophages amplify Th1 response via exosomes and provide novel insights into the crosstalk between macrophages and T cells as well.
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spelling pubmed-73908992020-08-12 M1 Macrophage Derived Exosomes Aggravate Experimental Autoimmune Neuritis via Modulating Th1 Response Du, Tong Yang, Chun-Lin Ge, Meng-Ru Liu, Ying Zhang, Peng Li, Heng Li, Xiao-Li Li, Tao Liu, Yu-Dong Dou, Ying-Chun Yang, Bing Duan, Rui-Sheng Front Immunol Immunology Guillain–Barré syndrome (GBS), an immune-mediated disorder affecting the peripheral nervous system, is the most common and severe acute paralytic neuropathy. GBS remains to be potentially life-threatening and disabling despite the increasing availability of current standard therapeutic regimens. Therefore, more targeted therapeutics are in urgent need. Macrophages have been implicated in both initiation and resolution of experimental autoimmune neuritis (EAN), the animal model of GBS, but the exact mechanisms remain to be elucidated. It has been increasingly appreciated that exosomes, a type of extracellular vesicles (EVs), are of importance for functions of macrophages. Nevertheless, the roles of macrophage derived exosomes in EAN/GBS remain unclear. Here we determined the effects of macrophage derived exosomes on the development of EAN in Lewis rats. M1 macrophage derived exosomes (M1 exosomes) were found to aggravate EAN via boosting Th1 and Th17 response, while M2 macrophage derived exosomes (M2 exosomes) showed potentials to mitigate disease severity via a mechanism bypassing Th1 and Th17 response. Besides, both M1 and M2 exosomes increased germinal center reactions in EAN. Further in vitro studies confirmed that M1 exosomes could directly promote IFN-γ production in T cells and M2 exosomes were not capable of inhibiting IFN-γ expression. Thus, our data identify a previously undescribed means that M1 macrophages amplify Th1 response via exosomes and provide novel insights into the crosstalk between macrophages and T cells as well. Frontiers Media S.A. 2020-07-23 /pmc/articles/PMC7390899/ /pubmed/32793234 http://dx.doi.org/10.3389/fimmu.2020.01603 Text en Copyright © 2020 Du, Yang, Ge, Liu, Zhang, Li, Li, Li, Liu, Dou, Yang and Duan. http://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
Du, Tong
Yang, Chun-Lin
Ge, Meng-Ru
Liu, Ying
Zhang, Peng
Li, Heng
Li, Xiao-Li
Li, Tao
Liu, Yu-Dong
Dou, Ying-Chun
Yang, Bing
Duan, Rui-Sheng
M1 Macrophage Derived Exosomes Aggravate Experimental Autoimmune Neuritis via Modulating Th1 Response
title M1 Macrophage Derived Exosomes Aggravate Experimental Autoimmune Neuritis via Modulating Th1 Response
title_full M1 Macrophage Derived Exosomes Aggravate Experimental Autoimmune Neuritis via Modulating Th1 Response
title_fullStr M1 Macrophage Derived Exosomes Aggravate Experimental Autoimmune Neuritis via Modulating Th1 Response
title_full_unstemmed M1 Macrophage Derived Exosomes Aggravate Experimental Autoimmune Neuritis via Modulating Th1 Response
title_short M1 Macrophage Derived Exosomes Aggravate Experimental Autoimmune Neuritis via Modulating Th1 Response
title_sort m1 macrophage derived exosomes aggravate experimental autoimmune neuritis via modulating th1 response
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7390899/
https://www.ncbi.nlm.nih.gov/pubmed/32793234
http://dx.doi.org/10.3389/fimmu.2020.01603
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