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Human Hepatocytes and Differentiated Adult-Derived Human Liver Stem/Progenitor Cells Display In Vitro Immunosuppressive Properties Mediated, at Least in Part, through the Nonclassical HLA Class I Molecule HLA-G

One of the main challenges in liver cell therapy (LCT) is the induction of a tolerogenic microenvironment to promote graft acceptance in the recipient. Little is known about the immunomodulatory potential of the hepatic cells used in liver cell therapy. In this work, we wanted to evaluate the immuno...

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Autores principales: Lombard, Catherine A., Sana, Gwenaëlle, LeMaoult, Joël, Najar, Mehdi, Ravau, Joachim, André, Floriane, Bouhtit, Fatima, Daouya, Marina, Loustau, Maria, Najimi, Mustapha, Lagneaux, Laurence, Carosella, Edgardo D., Sokal, Etienne M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6757295/
https://www.ncbi.nlm.nih.gov/pubmed/31612154
http://dx.doi.org/10.1155/2019/8250584
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author Lombard, Catherine A.
Sana, Gwenaëlle
LeMaoult, Joël
Najar, Mehdi
Ravau, Joachim
André, Floriane
Bouhtit, Fatima
Daouya, Marina
Loustau, Maria
Najimi, Mustapha
Lagneaux, Laurence
Carosella, Edgardo D.
Sokal, Etienne M.
author_facet Lombard, Catherine A.
Sana, Gwenaëlle
LeMaoult, Joël
Najar, Mehdi
Ravau, Joachim
André, Floriane
Bouhtit, Fatima
Daouya, Marina
Loustau, Maria
Najimi, Mustapha
Lagneaux, Laurence
Carosella, Edgardo D.
Sokal, Etienne M.
author_sort Lombard, Catherine A.
collection PubMed
description One of the main challenges in liver cell therapy (LCT) is the induction of a tolerogenic microenvironment to promote graft acceptance in the recipient. Little is known about the immunomodulatory potential of the hepatic cells used in liver cell therapy. In this work, we wanted to evaluate the immunosuppressive properties of human hepatocytes and adult-derived human liver stem/progenitor cells (ADHLSCs), as well as the potential involvement of the immunomodulatory molecule HLA-G. We demonstrated that both cell types were capable of inhibiting the proliferative response of PBMCs to an allogenic stimulus and that the immune inhibitory potential of ADHLSCs, although lower than that of hepatocytes, increased after hepatogenic differentiation. We demonstrated that liver cells express HLA-G and that the immune inhibition pattern was clearly associated to its expression. Interestingly, HLA-G expression increased after the third step of differentiation, wherein oncostatin M (OSM) was added. A 48 hr treatment with OSM was sufficient to induce HLA-G expression in ADHLSCs and result in immune inhibition. Surprisingly, blocking HLA-G partially reversed the immune inhibition mediated by hepatocytes and differentiated ADHLSCs, but not that of undifferentiated ADHLSCs, suggesting that additional immune inhibitory mechanisms may be used by these cells. In conclusion, we demonstrated that both hepatocytes and ADHLSCs present immunomodulatory properties mediated, at least in part, through HLA-G, which can be upregulated following hepatogenic differentiation or liver cell pretreatment with OSM. These observations open up new perspectives for the induction of tolerance following LCT and for potential therapeutic applications of these liver cells.
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spelling pubmed-67572952019-10-14 Human Hepatocytes and Differentiated Adult-Derived Human Liver Stem/Progenitor Cells Display In Vitro Immunosuppressive Properties Mediated, at Least in Part, through the Nonclassical HLA Class I Molecule HLA-G Lombard, Catherine A. Sana, Gwenaëlle LeMaoult, Joël Najar, Mehdi Ravau, Joachim André, Floriane Bouhtit, Fatima Daouya, Marina Loustau, Maria Najimi, Mustapha Lagneaux, Laurence Carosella, Edgardo D. Sokal, Etienne M. J Immunol Res Research Article One of the main challenges in liver cell therapy (LCT) is the induction of a tolerogenic microenvironment to promote graft acceptance in the recipient. Little is known about the immunomodulatory potential of the hepatic cells used in liver cell therapy. In this work, we wanted to evaluate the immunosuppressive properties of human hepatocytes and adult-derived human liver stem/progenitor cells (ADHLSCs), as well as the potential involvement of the immunomodulatory molecule HLA-G. We demonstrated that both cell types were capable of inhibiting the proliferative response of PBMCs to an allogenic stimulus and that the immune inhibitory potential of ADHLSCs, although lower than that of hepatocytes, increased after hepatogenic differentiation. We demonstrated that liver cells express HLA-G and that the immune inhibition pattern was clearly associated to its expression. Interestingly, HLA-G expression increased after the third step of differentiation, wherein oncostatin M (OSM) was added. A 48 hr treatment with OSM was sufficient to induce HLA-G expression in ADHLSCs and result in immune inhibition. Surprisingly, blocking HLA-G partially reversed the immune inhibition mediated by hepatocytes and differentiated ADHLSCs, but not that of undifferentiated ADHLSCs, suggesting that additional immune inhibitory mechanisms may be used by these cells. In conclusion, we demonstrated that both hepatocytes and ADHLSCs present immunomodulatory properties mediated, at least in part, through HLA-G, which can be upregulated following hepatogenic differentiation or liver cell pretreatment with OSM. These observations open up new perspectives for the induction of tolerance following LCT and for potential therapeutic applications of these liver cells. Hindawi 2019-09-12 /pmc/articles/PMC6757295/ /pubmed/31612154 http://dx.doi.org/10.1155/2019/8250584 Text en Copyright © 2019 Catherine A. Lombard et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lombard, Catherine A.
Sana, Gwenaëlle
LeMaoult, Joël
Najar, Mehdi
Ravau, Joachim
André, Floriane
Bouhtit, Fatima
Daouya, Marina
Loustau, Maria
Najimi, Mustapha
Lagneaux, Laurence
Carosella, Edgardo D.
Sokal, Etienne M.
Human Hepatocytes and Differentiated Adult-Derived Human Liver Stem/Progenitor Cells Display In Vitro Immunosuppressive Properties Mediated, at Least in Part, through the Nonclassical HLA Class I Molecule HLA-G
title Human Hepatocytes and Differentiated Adult-Derived Human Liver Stem/Progenitor Cells Display In Vitro Immunosuppressive Properties Mediated, at Least in Part, through the Nonclassical HLA Class I Molecule HLA-G
title_full Human Hepatocytes and Differentiated Adult-Derived Human Liver Stem/Progenitor Cells Display In Vitro Immunosuppressive Properties Mediated, at Least in Part, through the Nonclassical HLA Class I Molecule HLA-G
title_fullStr Human Hepatocytes and Differentiated Adult-Derived Human Liver Stem/Progenitor Cells Display In Vitro Immunosuppressive Properties Mediated, at Least in Part, through the Nonclassical HLA Class I Molecule HLA-G
title_full_unstemmed Human Hepatocytes and Differentiated Adult-Derived Human Liver Stem/Progenitor Cells Display In Vitro Immunosuppressive Properties Mediated, at Least in Part, through the Nonclassical HLA Class I Molecule HLA-G
title_short Human Hepatocytes and Differentiated Adult-Derived Human Liver Stem/Progenitor Cells Display In Vitro Immunosuppressive Properties Mediated, at Least in Part, through the Nonclassical HLA Class I Molecule HLA-G
title_sort human hepatocytes and differentiated adult-derived human liver stem/progenitor cells display in vitro immunosuppressive properties mediated, at least in part, through the nonclassical hla class i molecule hla-g
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6757295/
https://www.ncbi.nlm.nih.gov/pubmed/31612154
http://dx.doi.org/10.1155/2019/8250584
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