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Fingolimod Alters Tissue Distribution and Cytokine Production of Human and Murine Innate Lymphoid Cells

Sphingosine-1 phosphate receptor 1 (S1PR1) is expressed by lymphocytes and regulates their egress from secondary lymphoid organs. Innate lymphoid cell (ILC) family has been expanded with the discovery of group 1, 2 and 3 ILCs, namely ILC1, ILC2 and ILC3. ILC3 and ILC1 have remarkable similarity to C...

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Autores principales: Eken, Ahmet, Yetkin, Mehmet Fatih, Vural, Alperen, Okus, Fatma Zehra, Erdem, Serife, Azizoglu, Zehra Busra, Haliloglu, Yesim, Cakir, Mustafa, Turkoglu, Enes Mehmet, Kilic, Omer, Kara, Irfan, Dönmez Altuntaş, Hamiyet, Oukka, Mohamed, Kutuk, Mehmet Serdar, Mirza, Meral, Canatan, Halit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6385997/
https://www.ncbi.nlm.nih.gov/pubmed/30828332
http://dx.doi.org/10.3389/fimmu.2019.00217
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author Eken, Ahmet
Yetkin, Mehmet Fatih
Vural, Alperen
Okus, Fatma Zehra
Erdem, Serife
Azizoglu, Zehra Busra
Haliloglu, Yesim
Cakir, Mustafa
Turkoglu, Enes Mehmet
Kilic, Omer
Kara, Irfan
Dönmez Altuntaş, Hamiyet
Oukka, Mohamed
Kutuk, Mehmet Serdar
Mirza, Meral
Canatan, Halit
author_facet Eken, Ahmet
Yetkin, Mehmet Fatih
Vural, Alperen
Okus, Fatma Zehra
Erdem, Serife
Azizoglu, Zehra Busra
Haliloglu, Yesim
Cakir, Mustafa
Turkoglu, Enes Mehmet
Kilic, Omer
Kara, Irfan
Dönmez Altuntaş, Hamiyet
Oukka, Mohamed
Kutuk, Mehmet Serdar
Mirza, Meral
Canatan, Halit
author_sort Eken, Ahmet
collection PubMed
description Sphingosine-1 phosphate receptor 1 (S1PR1) is expressed by lymphocytes and regulates their egress from secondary lymphoid organs. Innate lymphoid cell (ILC) family has been expanded with the discovery of group 1, 2 and 3 ILCs, namely ILC1, ILC2 and ILC3. ILC3 and ILC1 have remarkable similarity to CD4+ helper T cell lineage members Th17 and Th1, respectively, which are important in the pathology of multiple sclerosis (MS). Whether human ILC subsets express S1PR1 or respond to its ligands have not been studied. In this study, we used peripheral blood/cord blood and tonsil lymphocytes as a source of human ILCs. We show that human ILCs express S1PR1 mRNA and protein and migrate toward S1P receptor ligands. Comparison of peripheral blood ILC numbers between fingolimod-receiving and treatment-free MS patients revealed that, in vivo, ILCs respond to fingolimod, an S1PR1 agonist, resulting in ILC-penia in circulation. Similarly, murine ILCs responded to fingolimod by exiting blood and accumulating in the secondary lymph nodes. Importantly, ex vivo exposure of ILC3 and ILC1 to fingolimod or SEW2871, another S1PR1 antagonist, reduced production of ILC3- and ILC1- associated cytokines GM-CSF, IL-22, IL-17, and IFN-γ, respectively. Surprisingly, despite reduced number of lamina propria-resident ILC3s in the long-term fingolimod-treated mice, ILC3-associated IL-22, IL-17A, GM-CSF and antimicrobial peptides were high in the gut compared to controls, suggesting that its long term use may not compromise mucosal barrier function. To our knowledge, this is the first study to investigate the impact of fingolimod on human ILC subsets in vivo and ex vivo, and provides insight into the impact of long term fingolimod use on ILC populations.
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spelling pubmed-63859972019-03-01 Fingolimod Alters Tissue Distribution and Cytokine Production of Human and Murine Innate Lymphoid Cells Eken, Ahmet Yetkin, Mehmet Fatih Vural, Alperen Okus, Fatma Zehra Erdem, Serife Azizoglu, Zehra Busra Haliloglu, Yesim Cakir, Mustafa Turkoglu, Enes Mehmet Kilic, Omer Kara, Irfan Dönmez Altuntaş, Hamiyet Oukka, Mohamed Kutuk, Mehmet Serdar Mirza, Meral Canatan, Halit Front Immunol Immunology Sphingosine-1 phosphate receptor 1 (S1PR1) is expressed by lymphocytes and regulates their egress from secondary lymphoid organs. Innate lymphoid cell (ILC) family has been expanded with the discovery of group 1, 2 and 3 ILCs, namely ILC1, ILC2 and ILC3. ILC3 and ILC1 have remarkable similarity to CD4+ helper T cell lineage members Th17 and Th1, respectively, which are important in the pathology of multiple sclerosis (MS). Whether human ILC subsets express S1PR1 or respond to its ligands have not been studied. In this study, we used peripheral blood/cord blood and tonsil lymphocytes as a source of human ILCs. We show that human ILCs express S1PR1 mRNA and protein and migrate toward S1P receptor ligands. Comparison of peripheral blood ILC numbers between fingolimod-receiving and treatment-free MS patients revealed that, in vivo, ILCs respond to fingolimod, an S1PR1 agonist, resulting in ILC-penia in circulation. Similarly, murine ILCs responded to fingolimod by exiting blood and accumulating in the secondary lymph nodes. Importantly, ex vivo exposure of ILC3 and ILC1 to fingolimod or SEW2871, another S1PR1 antagonist, reduced production of ILC3- and ILC1- associated cytokines GM-CSF, IL-22, IL-17, and IFN-γ, respectively. Surprisingly, despite reduced number of lamina propria-resident ILC3s in the long-term fingolimod-treated mice, ILC3-associated IL-22, IL-17A, GM-CSF and antimicrobial peptides were high in the gut compared to controls, suggesting that its long term use may not compromise mucosal barrier function. To our knowledge, this is the first study to investigate the impact of fingolimod on human ILC subsets in vivo and ex vivo, and provides insight into the impact of long term fingolimod use on ILC populations. Frontiers Media S.A. 2019-02-13 /pmc/articles/PMC6385997/ /pubmed/30828332 http://dx.doi.org/10.3389/fimmu.2019.00217 Text en Copyright © 2019 Eken, Yetkin, Vural, Okus, Erdem, Azizoglu, Haliloglu, Cakir, Turkoglu, Kilic, Kara, Dönmez Altuntaş, Oukka, Kutuk, Mirza and Canatan. 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
Eken, Ahmet
Yetkin, Mehmet Fatih
Vural, Alperen
Okus, Fatma Zehra
Erdem, Serife
Azizoglu, Zehra Busra
Haliloglu, Yesim
Cakir, Mustafa
Turkoglu, Enes Mehmet
Kilic, Omer
Kara, Irfan
Dönmez Altuntaş, Hamiyet
Oukka, Mohamed
Kutuk, Mehmet Serdar
Mirza, Meral
Canatan, Halit
Fingolimod Alters Tissue Distribution and Cytokine Production of Human and Murine Innate Lymphoid Cells
title Fingolimod Alters Tissue Distribution and Cytokine Production of Human and Murine Innate Lymphoid Cells
title_full Fingolimod Alters Tissue Distribution and Cytokine Production of Human and Murine Innate Lymphoid Cells
title_fullStr Fingolimod Alters Tissue Distribution and Cytokine Production of Human and Murine Innate Lymphoid Cells
title_full_unstemmed Fingolimod Alters Tissue Distribution and Cytokine Production of Human and Murine Innate Lymphoid Cells
title_short Fingolimod Alters Tissue Distribution and Cytokine Production of Human and Murine Innate Lymphoid Cells
title_sort fingolimod alters tissue distribution and cytokine production of human and murine innate lymphoid cells
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6385997/
https://www.ncbi.nlm.nih.gov/pubmed/30828332
http://dx.doi.org/10.3389/fimmu.2019.00217
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