Cargando…

A New Strategy to Generate Functional Insulin-Producing Cell Lines by Somatic Gene Transfer into Pancreatic Progenitors

BACKGROUND: There is increasing interest in developing human cell lines to be used to better understand cell biology, but also for drug screening, toxicology analysis and future cell therapy. In the endocrine pancreatic field, functional human beta cell lines are extremely scarce. On the other hand,...

Descripción completa

Detalles Bibliográficos
Autores principales: Ravassard, Philippe, Emilie Bricout-Neveu, Hazhouz, Yasmine, Pechberty, Severine, Mallet, Jacques, Czernichow, Paul, Scharfmann, Raphael
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2649535/
https://www.ncbi.nlm.nih.gov/pubmed/19266046
http://dx.doi.org/10.1371/journal.pone.0004731
_version_ 1782165056394362880
author Ravassard, Philippe
Emilie Bricout-Neveu,
Hazhouz, Yasmine
Pechberty, Severine
Mallet, Jacques
Czernichow, Paul
Scharfmann, Raphael
author_facet Ravassard, Philippe
Emilie Bricout-Neveu,
Hazhouz, Yasmine
Pechberty, Severine
Mallet, Jacques
Czernichow, Paul
Scharfmann, Raphael
author_sort Ravassard, Philippe
collection PubMed
description BACKGROUND: There is increasing interest in developing human cell lines to be used to better understand cell biology, but also for drug screening, toxicology analysis and future cell therapy. In the endocrine pancreatic field, functional human beta cell lines are extremely scarce. On the other hand, rodent insulin producing beta cells have been generated during the past years with great success. Many of such cell lines were produced by using transgenic mice expressing SV40T antigen under the control of the insulin promoter, an approach clearly inadequate in human. Our objective was to develop and validate in rodent an alternative transgenic-like approach, applicable to human tissue, by performing somatic gene transfer into pancreatic progenitors that will develop into beta cells. METHODS AND FINDINGS: In this study, rat embryonic pancreases were transduced with recombinant lentiviral vector expressing the SV40T antigen under the control of the insulin promoter. Transduced tissues were next transplanted under the kidney capsule of immuno-incompetent mice allowing insulinoma development from which beta cell lines were established. Gene expression profile, insulin content and glucose dependent secretion, normalization of glycemia upon transplantation into diabetic mice validated the approach to generate beta cell lines. CONCLUSIONS: Somatic gene transfer into pancreatic progenitors represents an alternative strategy to generate functional beta cell lines in rodent. Moreover, this approach can be generalized to derive cells lines from various tissues and most importantly from tissues of human origin.
format Text
id pubmed-2649535
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-26495352009-03-06 A New Strategy to Generate Functional Insulin-Producing Cell Lines by Somatic Gene Transfer into Pancreatic Progenitors Ravassard, Philippe Emilie Bricout-Neveu, Hazhouz, Yasmine Pechberty, Severine Mallet, Jacques Czernichow, Paul Scharfmann, Raphael PLoS One Research Article BACKGROUND: There is increasing interest in developing human cell lines to be used to better understand cell biology, but also for drug screening, toxicology analysis and future cell therapy. In the endocrine pancreatic field, functional human beta cell lines are extremely scarce. On the other hand, rodent insulin producing beta cells have been generated during the past years with great success. Many of such cell lines were produced by using transgenic mice expressing SV40T antigen under the control of the insulin promoter, an approach clearly inadequate in human. Our objective was to develop and validate in rodent an alternative transgenic-like approach, applicable to human tissue, by performing somatic gene transfer into pancreatic progenitors that will develop into beta cells. METHODS AND FINDINGS: In this study, rat embryonic pancreases were transduced with recombinant lentiviral vector expressing the SV40T antigen under the control of the insulin promoter. Transduced tissues were next transplanted under the kidney capsule of immuno-incompetent mice allowing insulinoma development from which beta cell lines were established. Gene expression profile, insulin content and glucose dependent secretion, normalization of glycemia upon transplantation into diabetic mice validated the approach to generate beta cell lines. CONCLUSIONS: Somatic gene transfer into pancreatic progenitors represents an alternative strategy to generate functional beta cell lines in rodent. Moreover, this approach can be generalized to derive cells lines from various tissues and most importantly from tissues of human origin. Public Library of Science 2009-03-06 /pmc/articles/PMC2649535/ /pubmed/19266046 http://dx.doi.org/10.1371/journal.pone.0004731 Text en Ravassard 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
Ravassard, Philippe
Emilie Bricout-Neveu,
Hazhouz, Yasmine
Pechberty, Severine
Mallet, Jacques
Czernichow, Paul
Scharfmann, Raphael
A New Strategy to Generate Functional Insulin-Producing Cell Lines by Somatic Gene Transfer into Pancreatic Progenitors
title A New Strategy to Generate Functional Insulin-Producing Cell Lines by Somatic Gene Transfer into Pancreatic Progenitors
title_full A New Strategy to Generate Functional Insulin-Producing Cell Lines by Somatic Gene Transfer into Pancreatic Progenitors
title_fullStr A New Strategy to Generate Functional Insulin-Producing Cell Lines by Somatic Gene Transfer into Pancreatic Progenitors
title_full_unstemmed A New Strategy to Generate Functional Insulin-Producing Cell Lines by Somatic Gene Transfer into Pancreatic Progenitors
title_short A New Strategy to Generate Functional Insulin-Producing Cell Lines by Somatic Gene Transfer into Pancreatic Progenitors
title_sort new strategy to generate functional insulin-producing cell lines by somatic gene transfer into pancreatic progenitors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2649535/
https://www.ncbi.nlm.nih.gov/pubmed/19266046
http://dx.doi.org/10.1371/journal.pone.0004731
work_keys_str_mv AT ravassardphilippe anewstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT emiliebricoutneveu anewstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT hazhouzyasmine anewstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT pechbertyseverine anewstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT malletjacques anewstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT czernichowpaul anewstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT scharfmannraphael anewstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT ravassardphilippe newstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT emiliebricoutneveu newstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT hazhouzyasmine newstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT pechbertyseverine newstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT malletjacques newstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT czernichowpaul newstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors
AT scharfmannraphael newstrategytogeneratefunctionalinsulinproducingcelllinesbysomaticgenetransferintopancreaticprogenitors