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Human mesenchymal stromal cell-secreted lactate induces M2-macrophage differentiation by metabolic reprogramming

Human mesenchymal stromal cells (MSC) have been shown to dampen immune response and promote tissue repair, but the underlying mechanisms are still under investigation. Herein, we demonstrate that umbilical cord-derived MSC (UC-MSC) alter the phenotype and function of monocyte-derived dendritic cells...

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Autores principales: Selleri, Silvia, Bifsha, Panojot, Civini, Sara, Pacelli, Consiglia, Dieng, Mame Massar, Lemieux, William, Jin, Ping, Bazin, Renée, Patey, Natacha, Marincola, Francesco M., Moldovan, Florina, Zaouter, Charlotte, Trudeau, Louis-Eric, Benabdhalla, Basma, Louis, Isabelle, Beauséjour, Christian, Stroncek, David, Le Deist, Françoise, Haddad, Elie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5058674/
https://www.ncbi.nlm.nih.gov/pubmed/27070086
http://dx.doi.org/10.18632/oncotarget.8623
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author Selleri, Silvia
Bifsha, Panojot
Civini, Sara
Pacelli, Consiglia
Dieng, Mame Massar
Lemieux, William
Jin, Ping
Bazin, Renée
Patey, Natacha
Marincola, Francesco M.
Moldovan, Florina
Zaouter, Charlotte
Trudeau, Louis-Eric
Benabdhalla, Basma
Louis, Isabelle
Beauséjour, Christian
Stroncek, David
Le Deist, Françoise
Haddad, Elie
author_facet Selleri, Silvia
Bifsha, Panojot
Civini, Sara
Pacelli, Consiglia
Dieng, Mame Massar
Lemieux, William
Jin, Ping
Bazin, Renée
Patey, Natacha
Marincola, Francesco M.
Moldovan, Florina
Zaouter, Charlotte
Trudeau, Louis-Eric
Benabdhalla, Basma
Louis, Isabelle
Beauséjour, Christian
Stroncek, David
Le Deist, Françoise
Haddad, Elie
author_sort Selleri, Silvia
collection PubMed
description Human mesenchymal stromal cells (MSC) have been shown to dampen immune response and promote tissue repair, but the underlying mechanisms are still under investigation. Herein, we demonstrate that umbilical cord-derived MSC (UC-MSC) alter the phenotype and function of monocyte-derived dendritic cells (DC) through lactate-mediated metabolic reprogramming. UC-MSC can secrete large quantities of lactate and, when present during monocyte-to-DC differentiation, induce instead the acquisition of M2-macrophage features in terms of morphology, surface markers, migratory properties and antigen presentation capacity. Microarray expression profiling indicates that UC-MSC modify the expression of metabolic-related genes and induce a M2-macrophage expression signature. Importantly, monocyte-derived DC obtained in presence of UC-MSC, polarize naïve allogeneic CD4(+) T-cells into Th2 cells. Treatment of UC-MSC with an inhibitor of lactate dehydrogenase strongly decreases lactate concentration in culture supernatant and abrogates the effect on monocyte-to-DC differentiation. Metabolic analysis further revealed that UC-MSC decrease oxidative phosphorylation in differentiating monocytes while strongly increasing the spare respiratory capacity proportional to the amount of secreted lactate. Because both MSC and monocytes are recruited in vivo at the site of tissue damage and inflammation, we propose the local increase of lactate concentration induced by UC-MSC and the consequent enrichment in M2-macrophage generation as a mechanism to achieve immunomodulation.
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spelling pubmed-50586742016-10-15 Human mesenchymal stromal cell-secreted lactate induces M2-macrophage differentiation by metabolic reprogramming Selleri, Silvia Bifsha, Panojot Civini, Sara Pacelli, Consiglia Dieng, Mame Massar Lemieux, William Jin, Ping Bazin, Renée Patey, Natacha Marincola, Francesco M. Moldovan, Florina Zaouter, Charlotte Trudeau, Louis-Eric Benabdhalla, Basma Louis, Isabelle Beauséjour, Christian Stroncek, David Le Deist, Françoise Haddad, Elie Oncotarget Research Paper: Immunology Human mesenchymal stromal cells (MSC) have been shown to dampen immune response and promote tissue repair, but the underlying mechanisms are still under investigation. Herein, we demonstrate that umbilical cord-derived MSC (UC-MSC) alter the phenotype and function of monocyte-derived dendritic cells (DC) through lactate-mediated metabolic reprogramming. UC-MSC can secrete large quantities of lactate and, when present during monocyte-to-DC differentiation, induce instead the acquisition of M2-macrophage features in terms of morphology, surface markers, migratory properties and antigen presentation capacity. Microarray expression profiling indicates that UC-MSC modify the expression of metabolic-related genes and induce a M2-macrophage expression signature. Importantly, monocyte-derived DC obtained in presence of UC-MSC, polarize naïve allogeneic CD4(+) T-cells into Th2 cells. Treatment of UC-MSC with an inhibitor of lactate dehydrogenase strongly decreases lactate concentration in culture supernatant and abrogates the effect on monocyte-to-DC differentiation. Metabolic analysis further revealed that UC-MSC decrease oxidative phosphorylation in differentiating monocytes while strongly increasing the spare respiratory capacity proportional to the amount of secreted lactate. Because both MSC and monocytes are recruited in vivo at the site of tissue damage and inflammation, we propose the local increase of lactate concentration induced by UC-MSC and the consequent enrichment in M2-macrophage generation as a mechanism to achieve immunomodulation. Impact Journals LLC 2016-04-06 /pmc/articles/PMC5058674/ /pubmed/27070086 http://dx.doi.org/10.18632/oncotarget.8623 Text en Copyright: © 2016 Selleri et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper: Immunology
Selleri, Silvia
Bifsha, Panojot
Civini, Sara
Pacelli, Consiglia
Dieng, Mame Massar
Lemieux, William
Jin, Ping
Bazin, Renée
Patey, Natacha
Marincola, Francesco M.
Moldovan, Florina
Zaouter, Charlotte
Trudeau, Louis-Eric
Benabdhalla, Basma
Louis, Isabelle
Beauséjour, Christian
Stroncek, David
Le Deist, Françoise
Haddad, Elie
Human mesenchymal stromal cell-secreted lactate induces M2-macrophage differentiation by metabolic reprogramming
title Human mesenchymal stromal cell-secreted lactate induces M2-macrophage differentiation by metabolic reprogramming
title_full Human mesenchymal stromal cell-secreted lactate induces M2-macrophage differentiation by metabolic reprogramming
title_fullStr Human mesenchymal stromal cell-secreted lactate induces M2-macrophage differentiation by metabolic reprogramming
title_full_unstemmed Human mesenchymal stromal cell-secreted lactate induces M2-macrophage differentiation by metabolic reprogramming
title_short Human mesenchymal stromal cell-secreted lactate induces M2-macrophage differentiation by metabolic reprogramming
title_sort human mesenchymal stromal cell-secreted lactate induces m2-macrophage differentiation by metabolic reprogramming
topic Research Paper: Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5058674/
https://www.ncbi.nlm.nih.gov/pubmed/27070086
http://dx.doi.org/10.18632/oncotarget.8623
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