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Microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory T-cell expansion

Mesenchymal stem cells (MSCs) are known to both have powerful immunosuppressive properties and promote allograft tolerance. Determining the environmental oxygen tension and inflammatory conditions under which MSCs are optimally primed for this immunosuppressive function is essential to their utiliza...

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Autores principales: Kadle, Rohini L., Abdou, Salma A., Villarreal-Ponce, Alvaro P., Soares, Marc A., Sultan, Darren L., David, Joshua A., Massie, Jonathan, Rifkin, William J., Rabbani, Piul, Ceradini, Daniel J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5841747/
https://www.ncbi.nlm.nih.gov/pubmed/29513756
http://dx.doi.org/10.1371/journal.pone.0193178
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author Kadle, Rohini L.
Abdou, Salma A.
Villarreal-Ponce, Alvaro P.
Soares, Marc A.
Sultan, Darren L.
David, Joshua A.
Massie, Jonathan
Rifkin, William J.
Rabbani, Piul
Ceradini, Daniel J.
author_facet Kadle, Rohini L.
Abdou, Salma A.
Villarreal-Ponce, Alvaro P.
Soares, Marc A.
Sultan, Darren L.
David, Joshua A.
Massie, Jonathan
Rifkin, William J.
Rabbani, Piul
Ceradini, Daniel J.
author_sort Kadle, Rohini L.
collection PubMed
description Mesenchymal stem cells (MSCs) are known to both have powerful immunosuppressive properties and promote allograft tolerance. Determining the environmental oxygen tension and inflammatory conditions under which MSCs are optimally primed for this immunosuppressive function is essential to their utilization in promoting graft tolerance. Of particular interest is the mechanisms governing the interaction between MSCs and regulatory T cells (Tregs), which is relatively unknown. We performed our experiments utilizing rat bone marrow derived MSCs. We observed that priming MSCs in hypoxia promotes maintenance of stem-like characteristics, with greater expression of typical MSC cell-surface markers, increased proliferation, and maintenance of differentiation potential. Addition of autologous MSCs to CD4+/allogeneic endothelial cell (EC) co-culture increases regulatory T cell (Treg) proliferation, which is further enhanced when MSCs are primed in hypoxia. Furthermore, MSC-mediated Treg expansion does not require direct cell-cell contact. The expression of indolamine 2,3-dioxygenase, a mediator of MSC immunomodulation, increases when MSCs are primed in hypoxia, and inhibition of IDO significantly decreases the expansion of Tregs. Priming with inflammatory cytokines IFNγ and TNFα increases also expression of markers associated with MSC immunomodulatory function, but decreases MSC proliferation. The expression of IDO also increases when MSCs are primed with inflammatory cytokines. However, there is no increase in Treg expansion when MSCs are primed with IFNγ, suggesting an alternate mechanism for inflammatory-stimulated MSC immunomodulation. Overall, these results suggest that MSCs primed in hypoxia or inflammatory conditions are optimally primed for immunosuppressive function. These results provide a clearer picture of how to enhance MSC immunomodulation for clinical use.
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spelling pubmed-58417472018-03-23 Microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory T-cell expansion Kadle, Rohini L. Abdou, Salma A. Villarreal-Ponce, Alvaro P. Soares, Marc A. Sultan, Darren L. David, Joshua A. Massie, Jonathan Rifkin, William J. Rabbani, Piul Ceradini, Daniel J. PLoS One Research Article Mesenchymal stem cells (MSCs) are known to both have powerful immunosuppressive properties and promote allograft tolerance. Determining the environmental oxygen tension and inflammatory conditions under which MSCs are optimally primed for this immunosuppressive function is essential to their utilization in promoting graft tolerance. Of particular interest is the mechanisms governing the interaction between MSCs and regulatory T cells (Tregs), which is relatively unknown. We performed our experiments utilizing rat bone marrow derived MSCs. We observed that priming MSCs in hypoxia promotes maintenance of stem-like characteristics, with greater expression of typical MSC cell-surface markers, increased proliferation, and maintenance of differentiation potential. Addition of autologous MSCs to CD4+/allogeneic endothelial cell (EC) co-culture increases regulatory T cell (Treg) proliferation, which is further enhanced when MSCs are primed in hypoxia. Furthermore, MSC-mediated Treg expansion does not require direct cell-cell contact. The expression of indolamine 2,3-dioxygenase, a mediator of MSC immunomodulation, increases when MSCs are primed in hypoxia, and inhibition of IDO significantly decreases the expansion of Tregs. Priming with inflammatory cytokines IFNγ and TNFα increases also expression of markers associated with MSC immunomodulatory function, but decreases MSC proliferation. The expression of IDO also increases when MSCs are primed with inflammatory cytokines. However, there is no increase in Treg expansion when MSCs are primed with IFNγ, suggesting an alternate mechanism for inflammatory-stimulated MSC immunomodulation. Overall, these results suggest that MSCs primed in hypoxia or inflammatory conditions are optimally primed for immunosuppressive function. These results provide a clearer picture of how to enhance MSC immunomodulation for clinical use. Public Library of Science 2018-03-07 /pmc/articles/PMC5841747/ /pubmed/29513756 http://dx.doi.org/10.1371/journal.pone.0193178 Text en © 2018 Kadle et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kadle, Rohini L.
Abdou, Salma A.
Villarreal-Ponce, Alvaro P.
Soares, Marc A.
Sultan, Darren L.
David, Joshua A.
Massie, Jonathan
Rifkin, William J.
Rabbani, Piul
Ceradini, Daniel J.
Microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory T-cell expansion
title Microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory T-cell expansion
title_full Microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory T-cell expansion
title_fullStr Microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory T-cell expansion
title_full_unstemmed Microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory T-cell expansion
title_short Microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory T-cell expansion
title_sort microenvironmental cues enhance mesenchymal stem cell-mediated immunomodulation and regulatory t-cell expansion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5841747/
https://www.ncbi.nlm.nih.gov/pubmed/29513756
http://dx.doi.org/10.1371/journal.pone.0193178
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