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Generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells

Multipotent Adult Progenitor Cells (MAPCs) are one potential stem cell source to generate functional hepatocytes or β-cells. However, human MAPCs have less plasticity than pluripotent stem cells (PSCs), as their ability to generate endodermal cells is not robust. Here we studied the role of 14 trans...

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Autores principales: Sambathkumar, Rangarajan, Akkerman, Renate, Dastidar, Sumitava, Roelandt, Philip, Kumar, Manoj, Bajaj, Manmohan, Mestre Rosa, Ana Rita, Helsen, Nicky, Vanslembrouck, Veerle, Kalo, Eric, Khurana, Satish, Laureys, Jos, Gysemans, Conny, Faas, Marijke M., de Vos, Paul, Verfaillie, Catherine M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5947914/
https://www.ncbi.nlm.nih.gov/pubmed/29750821
http://dx.doi.org/10.1371/journal.pone.0197046
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author Sambathkumar, Rangarajan
Akkerman, Renate
Dastidar, Sumitava
Roelandt, Philip
Kumar, Manoj
Bajaj, Manmohan
Mestre Rosa, Ana Rita
Helsen, Nicky
Vanslembrouck, Veerle
Kalo, Eric
Khurana, Satish
Laureys, Jos
Gysemans, Conny
Faas, Marijke M.
de Vos, Paul
Verfaillie, Catherine M.
author_facet Sambathkumar, Rangarajan
Akkerman, Renate
Dastidar, Sumitava
Roelandt, Philip
Kumar, Manoj
Bajaj, Manmohan
Mestre Rosa, Ana Rita
Helsen, Nicky
Vanslembrouck, Veerle
Kalo, Eric
Khurana, Satish
Laureys, Jos
Gysemans, Conny
Faas, Marijke M.
de Vos, Paul
Verfaillie, Catherine M.
author_sort Sambathkumar, Rangarajan
collection PubMed
description Multipotent Adult Progenitor Cells (MAPCs) are one potential stem cell source to generate functional hepatocytes or β-cells. However, human MAPCs have less plasticity than pluripotent stem cells (PSCs), as their ability to generate endodermal cells is not robust. Here we studied the role of 14 transcription factors (TFs) in reprogramming MAPCs to induced endodermal progenitor cells (iENDO cells), defined as cells that can be long-term expanded and differentiated to both hepatocyte- and endocrine pancreatic-like cells. We demonstrated that 14 TF-iENDO cells can be expanded for at least 20 passages, differentiate spontaneously to hepatocyte-, endocrine pancreatic-, gut tube-like cells as well as endodermal tumor formation when grafted in immunodeficient mice. Furthermore, iENDO cells can be differentiated in vitro into hepatocyte- and endocrine pancreatic-like cells. However, the pluripotency TF OCT4, which is not silenced in iENDO cells, may contribute to the incomplete differentiation to mature cells in vitro and to endodermal tumor formation in vivo. Nevertheless, the studies presented here provide evidence that reprogramming of adult stem cells to an endodermal intermediate progenitor, which can be expanded and differentiate to multiple endodermal cell types, might be a valid alternative for the use of PSCs for creation of endodermal cell types.
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spelling pubmed-59479142018-05-25 Generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells Sambathkumar, Rangarajan Akkerman, Renate Dastidar, Sumitava Roelandt, Philip Kumar, Manoj Bajaj, Manmohan Mestre Rosa, Ana Rita Helsen, Nicky Vanslembrouck, Veerle Kalo, Eric Khurana, Satish Laureys, Jos Gysemans, Conny Faas, Marijke M. de Vos, Paul Verfaillie, Catherine M. PLoS One Research Article Multipotent Adult Progenitor Cells (MAPCs) are one potential stem cell source to generate functional hepatocytes or β-cells. However, human MAPCs have less plasticity than pluripotent stem cells (PSCs), as their ability to generate endodermal cells is not robust. Here we studied the role of 14 transcription factors (TFs) in reprogramming MAPCs to induced endodermal progenitor cells (iENDO cells), defined as cells that can be long-term expanded and differentiated to both hepatocyte- and endocrine pancreatic-like cells. We demonstrated that 14 TF-iENDO cells can be expanded for at least 20 passages, differentiate spontaneously to hepatocyte-, endocrine pancreatic-, gut tube-like cells as well as endodermal tumor formation when grafted in immunodeficient mice. Furthermore, iENDO cells can be differentiated in vitro into hepatocyte- and endocrine pancreatic-like cells. However, the pluripotency TF OCT4, which is not silenced in iENDO cells, may contribute to the incomplete differentiation to mature cells in vitro and to endodermal tumor formation in vivo. Nevertheless, the studies presented here provide evidence that reprogramming of adult stem cells to an endodermal intermediate progenitor, which can be expanded and differentiate to multiple endodermal cell types, might be a valid alternative for the use of PSCs for creation of endodermal cell types. Public Library of Science 2018-05-11 /pmc/articles/PMC5947914/ /pubmed/29750821 http://dx.doi.org/10.1371/journal.pone.0197046 Text en © 2018 Sambathkumar 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
Sambathkumar, Rangarajan
Akkerman, Renate
Dastidar, Sumitava
Roelandt, Philip
Kumar, Manoj
Bajaj, Manmohan
Mestre Rosa, Ana Rita
Helsen, Nicky
Vanslembrouck, Veerle
Kalo, Eric
Khurana, Satish
Laureys, Jos
Gysemans, Conny
Faas, Marijke M.
de Vos, Paul
Verfaillie, Catherine M.
Generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells
title Generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells
title_full Generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells
title_fullStr Generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells
title_full_unstemmed Generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells
title_short Generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells
title_sort generation of hepatocyte- and endocrine pancreatic-like cells from human induced endodermal progenitor cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5947914/
https://www.ncbi.nlm.nih.gov/pubmed/29750821
http://dx.doi.org/10.1371/journal.pone.0197046
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