Cargando…

Insulin-Producing Cells Generated from Dedifferentiated Human Pancreatic Beta Cells Expanded In Vitro

BACKGROUND: Expansion of beta cells from the limited number of adult human islet donors is an attractive prospect for increasing cell availability for cell therapy of diabetes. However, attempts at expanding human islet cells in tissue culture result in loss of beta-cell phenotype. Using a lineage-t...

Descripción completa

Detalles Bibliográficos
Autores principales: Russ, Holger A., Sintov, Elad, Anker-Kitai, Leeat, Friedman, Orr, Lenz, Ayelet, Toren, Ginat, Farhy, Chen, Pasmanik-Chor, Metsada, Oron-Karni, Varda, Ravassard, Philippe, Efrat, Shimon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3184150/
https://www.ncbi.nlm.nih.gov/pubmed/21984932
http://dx.doi.org/10.1371/journal.pone.0025566
_version_ 1782213069716324352
author Russ, Holger A.
Sintov, Elad
Anker-Kitai, Leeat
Friedman, Orr
Lenz, Ayelet
Toren, Ginat
Farhy, Chen
Pasmanik-Chor, Metsada
Oron-Karni, Varda
Ravassard, Philippe
Efrat, Shimon
author_facet Russ, Holger A.
Sintov, Elad
Anker-Kitai, Leeat
Friedman, Orr
Lenz, Ayelet
Toren, Ginat
Farhy, Chen
Pasmanik-Chor, Metsada
Oron-Karni, Varda
Ravassard, Philippe
Efrat, Shimon
author_sort Russ, Holger A.
collection PubMed
description BACKGROUND: Expansion of beta cells from the limited number of adult human islet donors is an attractive prospect for increasing cell availability for cell therapy of diabetes. However, attempts at expanding human islet cells in tissue culture result in loss of beta-cell phenotype. Using a lineage-tracing approach we provided evidence for massive proliferation of beta-cell-derived (BCD) cells within these cultures. Expansion involves dedifferentiation resembling epithelial-mesenchymal transition (EMT). Epigenetic analyses indicate that key beta-cell genes maintain open chromatin structure in expanded BCD cells, although they are not transcribed. Here we investigated whether BCD cells can be redifferentiated into beta-like cells. METHODOLOGY/PRINCIPAL FINDING: Redifferentiation conditions were screened by following activation of an insulin-DsRed2 reporter gene. Redifferentiated cells were characterized for gene expression, insulin content and secretion assays, and presence of secretory vesicles by electron microscopy. BCD cells were induced to redifferentiate by a combination of soluble factors. The redifferentiated cells expressed beta-cell genes, stored insulin in typical secretory vesicles, and released it in response to glucose. The redifferentiation process involved mesenchymal-epithelial transition, as judged by changes in gene expression. Moreover, inhibition of the EMT effector SLUG (SNAI2) using shRNA resulted in stimulation of redifferentiation. Lineage-traced cells also gave rise at a low rate to cells expressing other islet hormones, suggesting transition of BCD cells through an islet progenitor-like stage during redifferentiation. CONCLUSIONS/SIGNIFICANCE: These findings demonstrate for the first time that expanded dedifferentiated beta cells can be induced to redifferentiate in culture. The findings suggest that ex-vivo expansion of adult human islet cells is a promising approach for generation of insulin-producing cells for transplantation, as well as basic research, toxicology studies, and drug screening.
format Online
Article
Text
id pubmed-3184150
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31841502011-10-07 Insulin-Producing Cells Generated from Dedifferentiated Human Pancreatic Beta Cells Expanded In Vitro Russ, Holger A. Sintov, Elad Anker-Kitai, Leeat Friedman, Orr Lenz, Ayelet Toren, Ginat Farhy, Chen Pasmanik-Chor, Metsada Oron-Karni, Varda Ravassard, Philippe Efrat, Shimon PLoS One Research Article BACKGROUND: Expansion of beta cells from the limited number of adult human islet donors is an attractive prospect for increasing cell availability for cell therapy of diabetes. However, attempts at expanding human islet cells in tissue culture result in loss of beta-cell phenotype. Using a lineage-tracing approach we provided evidence for massive proliferation of beta-cell-derived (BCD) cells within these cultures. Expansion involves dedifferentiation resembling epithelial-mesenchymal transition (EMT). Epigenetic analyses indicate that key beta-cell genes maintain open chromatin structure in expanded BCD cells, although they are not transcribed. Here we investigated whether BCD cells can be redifferentiated into beta-like cells. METHODOLOGY/PRINCIPAL FINDING: Redifferentiation conditions were screened by following activation of an insulin-DsRed2 reporter gene. Redifferentiated cells were characterized for gene expression, insulin content and secretion assays, and presence of secretory vesicles by electron microscopy. BCD cells were induced to redifferentiate by a combination of soluble factors. The redifferentiated cells expressed beta-cell genes, stored insulin in typical secretory vesicles, and released it in response to glucose. The redifferentiation process involved mesenchymal-epithelial transition, as judged by changes in gene expression. Moreover, inhibition of the EMT effector SLUG (SNAI2) using shRNA resulted in stimulation of redifferentiation. Lineage-traced cells also gave rise at a low rate to cells expressing other islet hormones, suggesting transition of BCD cells through an islet progenitor-like stage during redifferentiation. CONCLUSIONS/SIGNIFICANCE: These findings demonstrate for the first time that expanded dedifferentiated beta cells can be induced to redifferentiate in culture. The findings suggest that ex-vivo expansion of adult human islet cells is a promising approach for generation of insulin-producing cells for transplantation, as well as basic research, toxicology studies, and drug screening. Public Library of Science 2011-09-30 /pmc/articles/PMC3184150/ /pubmed/21984932 http://dx.doi.org/10.1371/journal.pone.0025566 Text en Russ 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Russ, Holger A.
Sintov, Elad
Anker-Kitai, Leeat
Friedman, Orr
Lenz, Ayelet
Toren, Ginat
Farhy, Chen
Pasmanik-Chor, Metsada
Oron-Karni, Varda
Ravassard, Philippe
Efrat, Shimon
Insulin-Producing Cells Generated from Dedifferentiated Human Pancreatic Beta Cells Expanded In Vitro
title Insulin-Producing Cells Generated from Dedifferentiated Human Pancreatic Beta Cells Expanded In Vitro
title_full Insulin-Producing Cells Generated from Dedifferentiated Human Pancreatic Beta Cells Expanded In Vitro
title_fullStr Insulin-Producing Cells Generated from Dedifferentiated Human Pancreatic Beta Cells Expanded In Vitro
title_full_unstemmed Insulin-Producing Cells Generated from Dedifferentiated Human Pancreatic Beta Cells Expanded In Vitro
title_short Insulin-Producing Cells Generated from Dedifferentiated Human Pancreatic Beta Cells Expanded In Vitro
title_sort insulin-producing cells generated from dedifferentiated human pancreatic beta cells expanded in vitro
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3184150/
https://www.ncbi.nlm.nih.gov/pubmed/21984932
http://dx.doi.org/10.1371/journal.pone.0025566
work_keys_str_mv AT russholgera insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT sintovelad insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT ankerkitaileeat insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT friedmanorr insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT lenzayelet insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT torenginat insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT farhychen insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT pasmanikchormetsada insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT oronkarnivarda insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT ravassardphilippe insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro
AT efratshimon insulinproducingcellsgeneratedfromdedifferentiatedhumanpancreaticbetacellsexpandedinvitro