Cargando…

Generation of functional cholangiocyte-like cells from human pluripotent stem cells and HepaRG cells

Cholangiocytes are biliary epithelial cells, which, like hepatocytes, originate from hepatoblasts during embryonic development. In this study we investigated the potential of human embryonic stem cells (hESCs) to differentiate into cholangiocytes and we report a new approach, which drives differenti...

Descripción completa

Detalles Bibliográficos
Autores principales: Dianat, Noushin, Dubois-Pot-Schneider, Hélène, Steichen, Clara, Desterke, Christophe, Leclerc, Philippe, Raveux, Aurélien, Combettes, Laurent, Weber, Anne, Corlu, Anne, Dubart-Kupperschmitt, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4315871/
https://www.ncbi.nlm.nih.gov/pubmed/24715669
http://dx.doi.org/10.1002/hep.27165
_version_ 1782355522543943680
author Dianat, Noushin
Dubois-Pot-Schneider, Hélène
Steichen, Clara
Desterke, Christophe
Leclerc, Philippe
Raveux, Aurélien
Combettes, Laurent
Weber, Anne
Corlu, Anne
Dubart-Kupperschmitt, Anne
author_facet Dianat, Noushin
Dubois-Pot-Schneider, Hélène
Steichen, Clara
Desterke, Christophe
Leclerc, Philippe
Raveux, Aurélien
Combettes, Laurent
Weber, Anne
Corlu, Anne
Dubart-Kupperschmitt, Anne
author_sort Dianat, Noushin
collection PubMed
description Cholangiocytes are biliary epithelial cells, which, like hepatocytes, originate from hepatoblasts during embryonic development. In this study we investigated the potential of human embryonic stem cells (hESCs) to differentiate into cholangiocytes and we report a new approach, which drives differentiation of hESCs toward the cholangiocytic lineage using feeder-free and defined culture conditions. After differentiation into hepatic progenitors, hESCs were differentiated further into cholangiocytes using growth hormone, epidermal growth factor, interleukin-6, and then sodium taurocholate. These conditions also allowed us to generate cholangiocytes from HepaRG-derived hepatoblasts. hESC- and HepaRG-derived cholangiocyte-like cells expressed markers of cholangiocytes including cytokeratin 7 and osteopontin, and the transcription factors SOX9 and hepatocyte nuclear factor 6. The cells also displayed specific proteins important for cholangiocyte functions including cystic fibrosis transmembrane conductance regulator, secretin receptor, and nuclear receptors. They formed primary cilia and also responded to hormonal stimulation by increase of intracellular Ca(2+). We demonstrated by integrative genomics that the expression of genes, which signed hESC- or HepaRG-cholangiocytes, separates hepatocytic lineage from cholangiocyte lineage. When grown in a 3D matrix, cholangiocytes developed epithelial/apicobasal polarity and formed functional cysts and biliary ducts. In addition, we showed that cholangiocyte-like cells could also be generated from human induced pluripotent stem cells, demonstrating the efficacy of our approach with stem/progenitor cells of diverse origins. Conclusion: We have developed a robust and efficient method for differentiating pluripotent stem cells into cholangiocyte-like cells, which display structural and functional similarities to bile duct cells in normal liver. These cells will be useful for the in vitro study of the molecular mechanisms of bile duct development and have important potential for therapeutic strategies, including bioengineered liver approaches. (Hepatology 2014;60:700–714)
format Online
Article
Text
id pubmed-4315871
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher BlackWell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-43158712015-02-17 Generation of functional cholangiocyte-like cells from human pluripotent stem cells and HepaRG cells Dianat, Noushin Dubois-Pot-Schneider, Hélène Steichen, Clara Desterke, Christophe Leclerc, Philippe Raveux, Aurélien Combettes, Laurent Weber, Anne Corlu, Anne Dubart-Kupperschmitt, Anne Hepatology Liver Injury/Regeneration Cholangiocytes are biliary epithelial cells, which, like hepatocytes, originate from hepatoblasts during embryonic development. In this study we investigated the potential of human embryonic stem cells (hESCs) to differentiate into cholangiocytes and we report a new approach, which drives differentiation of hESCs toward the cholangiocytic lineage using feeder-free and defined culture conditions. After differentiation into hepatic progenitors, hESCs were differentiated further into cholangiocytes using growth hormone, epidermal growth factor, interleukin-6, and then sodium taurocholate. These conditions also allowed us to generate cholangiocytes from HepaRG-derived hepatoblasts. hESC- and HepaRG-derived cholangiocyte-like cells expressed markers of cholangiocytes including cytokeratin 7 and osteopontin, and the transcription factors SOX9 and hepatocyte nuclear factor 6. The cells also displayed specific proteins important for cholangiocyte functions including cystic fibrosis transmembrane conductance regulator, secretin receptor, and nuclear receptors. They formed primary cilia and also responded to hormonal stimulation by increase of intracellular Ca(2+). We demonstrated by integrative genomics that the expression of genes, which signed hESC- or HepaRG-cholangiocytes, separates hepatocytic lineage from cholangiocyte lineage. When grown in a 3D matrix, cholangiocytes developed epithelial/apicobasal polarity and formed functional cysts and biliary ducts. In addition, we showed that cholangiocyte-like cells could also be generated from human induced pluripotent stem cells, demonstrating the efficacy of our approach with stem/progenitor cells of diverse origins. Conclusion: We have developed a robust and efficient method for differentiating pluripotent stem cells into cholangiocyte-like cells, which display structural and functional similarities to bile duct cells in normal liver. These cells will be useful for the in vitro study of the molecular mechanisms of bile duct development and have important potential for therapeutic strategies, including bioengineered liver approaches. (Hepatology 2014;60:700–714) BlackWell Publishing Ltd 2014-08 2014-06-20 /pmc/articles/PMC4315871/ /pubmed/24715669 http://dx.doi.org/10.1002/hep.27165 Text en Copyright © 2014 The Authors. HEPATOLOGY published by Wiley on behalf of the American Association for the Study of Liver Diseases. http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Liver Injury/Regeneration
Dianat, Noushin
Dubois-Pot-Schneider, Hélène
Steichen, Clara
Desterke, Christophe
Leclerc, Philippe
Raveux, Aurélien
Combettes, Laurent
Weber, Anne
Corlu, Anne
Dubart-Kupperschmitt, Anne
Generation of functional cholangiocyte-like cells from human pluripotent stem cells and HepaRG cells
title Generation of functional cholangiocyte-like cells from human pluripotent stem cells and HepaRG cells
title_full Generation of functional cholangiocyte-like cells from human pluripotent stem cells and HepaRG cells
title_fullStr Generation of functional cholangiocyte-like cells from human pluripotent stem cells and HepaRG cells
title_full_unstemmed Generation of functional cholangiocyte-like cells from human pluripotent stem cells and HepaRG cells
title_short Generation of functional cholangiocyte-like cells from human pluripotent stem cells and HepaRG cells
title_sort generation of functional cholangiocyte-like cells from human pluripotent stem cells and heparg cells
topic Liver Injury/Regeneration
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4315871/
https://www.ncbi.nlm.nih.gov/pubmed/24715669
http://dx.doi.org/10.1002/hep.27165
work_keys_str_mv AT dianatnoushin generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT duboispotschneiderhelene generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT steichenclara generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT desterkechristophe generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT leclercphilippe generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT raveuxaurelien generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT combetteslaurent generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT weberanne generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT corluanne generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells
AT dubartkupperschmittanne generationoffunctionalcholangiocytelikecellsfromhumanpluripotentstemcellsandhepargcells