Extracellular signalling cues play a major role in the activation of differentiation programmes. Mouse embryonic stem (ES) cells are pluripotent and can differentiate into a wide variety of specialized cells. Recently, protocols designed to induce endocrine pancreatic differentiation in vitro have been designed but little information is currently available concerning the potential of ES cells to differentiate into acinar pancreatic cells. By using conditioned media of cultured foetal pancreatic rudiments, we demonstrate that ES cells can respond in vitro to signalling pathways involved in exocrine development and differentiation. In particular, modulation of the hedgehog, transforming growth factor β, retinoid, and fibroblast growth factor pathways in ES cell-derived embryoid bodies (EB) resulted in increased levels of transcripts encoding pancreatic transcription factors and cytodifferentiation markers, as demonstrated by RT-PCR. In EB undergoing spontaneous differentiation, expression of the majority of the acinar genes (i.e. amylase, carboxypeptidase A and elastase) was induced after the expression of endocrine genes, as occurs in vivo during development. These data indicate that ES cells can undergo exocrine pancreatic differentiation with a kinetic pattern of expression reminiscent of pancreas development in vivo and that ES cells can be coaxed to express an acinar phenotype by activation of signalling pathways known to play a role in pancreatic development and differentiation.
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Research Article|
May 01 2004
Transforming growth factor (TGF)beta, fibroblast growth factor (FGF) and retinoid signalling pathways promote pancreatic exocrine gene expression in mouse embryonic stem cells
Anouchka SKOUDY;
Anouchka SKOUDY
1
*Unitat de Biologia Cel·lular i Molecular, Institut Municipal d'Investigació Mèdica, 08003 Barcelona, Spain
†Universitat Pompeu Fabra, Dr Aiguader 80, 08003 Barcelona, Spain
1To whom correspondence should be addressed (e-mail [email protected]).
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Meritxell ROVIRA;
Meritxell ROVIRA
*Unitat de Biologia Cel·lular i Molecular, Institut Municipal d'Investigació Mèdica, 08003 Barcelona, Spain
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Pierre SAVATIER;
Pierre SAVATIER
‡Laboratoire de Biologie Moléculaire de la Cellule, CNRS UM5161, INRA U1237, Ecole Normale Supérieure de Lyon, 46, Allée d'Italie, 69364 Lyon, France
§INSERM U371 ‘Cerveau et Vision’, Institut Fédératif des Neurosciences de Lyon, 18 Avenue Doyen Lépine, 69500 Bron, France
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Franz MARTIN;
Franz MARTIN
‖Institute of Bioengineering and Department of Physiology, Miguel Hernández University, Campus de San Juan, 03550 Alicante, Spain
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Trinidad LEÓN-QUINTO;
Trinidad LEÓN-QUINTO
‖Institute of Bioengineering and Department of Physiology, Miguel Hernández University, Campus de San Juan, 03550 Alicante, Spain
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Bernat SORIA;
Bernat SORIA
‖Institute of Bioengineering and Department of Physiology, Miguel Hernández University, Campus de San Juan, 03550 Alicante, Spain
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Francisco X. REAL
Francisco X. REAL
*Unitat de Biologia Cel·lular i Molecular, Institut Municipal d'Investigació Mèdica, 08003 Barcelona, Spain
†Universitat Pompeu Fabra, Dr Aiguader 80, 08003 Barcelona, Spain
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Publisher: Portland Press Ltd
Received:
November 20 2003
Revision Received:
January 19 2004
Accepted:
January 20 2004
Accepted Manuscript online:
January 20 2004
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London ©2004
2004
Biochem J (2004) 379 (3): 749–756.
Article history
Received:
November 20 2003
Revision Received:
January 19 2004
Accepted:
January 20 2004
Accepted Manuscript online:
January 20 2004
Citation
Anouchka SKOUDY, Meritxell ROVIRA, Pierre SAVATIER, Franz MARTIN, Trinidad LEÓN-QUINTO, Bernat SORIA, Francisco X. REAL; Transforming growth factor (TGF)beta, fibroblast growth factor (FGF) and retinoid signalling pathways promote pancreatic exocrine gene expression in mouse embryonic stem cells. Biochem J 1 May 2004; 379 (3): 749–756. doi: https://doi.org/10.1042/bj20031784
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