Long-term expansion, genomic stability and in vivo safety of adult human pancreas organoids
Abstract Background Pancreatic organoid systems have recently been described for the in vitro culture of pancreatic ductal cells from mouse and human. Mouse pancreatic organoids exhibit unlimited expansion potential, while previously reported human pancreas organoid (hPO) cultures do not expand effi...
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doaj-47524a6bf46d446fbbc96ccb6b7b40d32020-11-25T02:38:26ZengBMCBMC Developmental Biology1471-213X2020-02-0120112010.1186/s12861-020-0209-5Long-term expansion, genomic stability and in vivo safety of adult human pancreas organoidsNikitas Georgakopoulos0Nicole Prior1Brigitte Angres2Gianmarco Mastrogiovanni3Alex Cagan4Daisy Harrison5Christopher J. Hindley6Robert Arnes-Benito7Siong-Seng Liau8Abbie Curd9Natasha Ivory10Benjamin D. Simons11Inigo Martincorena12Helmut Wurst13Kourosh Saeb-Parsy14Meritxell Huch15The Wellcome Trust/ Cancer Research UK Gurdon Institute, University of CambridgeThe Wellcome Trust/ Cancer Research UK Gurdon Institute, University of CambridgeCellendes GmbHThe Wellcome Trust/ Cancer Research UK Gurdon Institute, University of CambridgeWellcome Sanger InstituteThe Wellcome Trust/ Cancer Research UK Gurdon Institute, University of CambridgeThe Wellcome Trust/ Cancer Research UK Gurdon Institute, University of CambridgeThe Wellcome Trust/ Cancer Research UK Gurdon Institute, University of CambridgeHepatopancreatobiliary Surgical Unit, Addenbrooke’s Hospital and MRC Cancer Unit, University of CambridgeCambridge Biorepository for Translational Medicine & Department of Surgery, University o.f Cambridge, and NIHR Cambridge Biomedical Research CentreCambridge Biorepository for Translational Medicine & Department of Surgery, University o.f Cambridge, and NIHR Cambridge Biomedical Research CentreThe Wellcome Trust/ Cancer Research UK Gurdon Institute, University of CambridgeWellcome Sanger InstituteCellendes GmbHCambridge Biorepository for Translational Medicine & Department of Surgery, University o.f Cambridge, and NIHR Cambridge Biomedical Research CentreThe Wellcome Trust/ Cancer Research UK Gurdon Institute, University of CambridgeAbstract Background Pancreatic organoid systems have recently been described for the in vitro culture of pancreatic ductal cells from mouse and human. Mouse pancreatic organoids exhibit unlimited expansion potential, while previously reported human pancreas organoid (hPO) cultures do not expand efficiently long-term in a chemically defined, serum-free medium. We sought to generate a 3D culture system for long-term expansion of human pancreas ductal cells as hPOs to serve as the basis for studies of human pancreas ductal epithelium, exocrine pancreatic diseases and the development of a genomically stable replacement cell therapy for diabetes mellitus. Results Our chemically defined, serum-free, human pancreas organoid culture medium supports the generation and expansion of hPOs with high efficiency from both fresh and cryopreserved primary tissue. hPOs can be expanded from a single cell, enabling their genetic manipulation and generation of clonal cultures. hPOs expanded for months in vitro maintain their ductal morphology, biomarker expression and chromosomal integrity. Xenografts of hPOs survive long-term in vivo when transplanted into the pancreas of immunodeficient mice. Notably, mouse orthotopic transplants show no signs of tumorigenicity. Crucially, our medium also supports the establishment and expansion of hPOs in a chemically defined, modifiable and scalable, biomimetic hydrogel. Conclusions hPOs can be expanded long-term, from both fresh and cryopreserved human pancreas tissue in a chemically defined, serum-free medium with no detectable tumorigenicity. hPOs can be clonally expanded, genetically manipulated and are amenable to culture in a chemically defined hydrogel. hPOs therefore represent an abundant source of pancreas ductal cells that retain the characteristics of the tissue-of-origin, which opens up avenues for modelling diseases of the ductal epithelium and increasing understanding of human pancreas exocrine biology as well as for potentially producing insulin-secreting cells for the treatment of diabetes.http://link.springer.com/article/10.1186/s12861-020-0209-5PancreasOrganoidIn vivo safetyChemically defined hydrogelGenetic stabilityPrimary cultures |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nikitas Georgakopoulos Nicole Prior Brigitte Angres Gianmarco Mastrogiovanni Alex Cagan Daisy Harrison Christopher J. Hindley Robert Arnes-Benito Siong-Seng Liau Abbie Curd Natasha Ivory Benjamin D. Simons Inigo Martincorena Helmut Wurst Kourosh Saeb-Parsy Meritxell Huch |
spellingShingle |
Nikitas Georgakopoulos Nicole Prior Brigitte Angres Gianmarco Mastrogiovanni Alex Cagan Daisy Harrison Christopher J. Hindley Robert Arnes-Benito Siong-Seng Liau Abbie Curd Natasha Ivory Benjamin D. Simons Inigo Martincorena Helmut Wurst Kourosh Saeb-Parsy Meritxell Huch Long-term expansion, genomic stability and in vivo safety of adult human pancreas organoids BMC Developmental Biology Pancreas Organoid In vivo safety Chemically defined hydrogel Genetic stability Primary cultures |
author_facet |
Nikitas Georgakopoulos Nicole Prior Brigitte Angres Gianmarco Mastrogiovanni Alex Cagan Daisy Harrison Christopher J. Hindley Robert Arnes-Benito Siong-Seng Liau Abbie Curd Natasha Ivory Benjamin D. Simons Inigo Martincorena Helmut Wurst Kourosh Saeb-Parsy Meritxell Huch |
author_sort |
Nikitas Georgakopoulos |
title |
Long-term expansion, genomic stability and in vivo safety of adult human pancreas organoids |
title_short |
Long-term expansion, genomic stability and in vivo safety of adult human pancreas organoids |
title_full |
Long-term expansion, genomic stability and in vivo safety of adult human pancreas organoids |
title_fullStr |
Long-term expansion, genomic stability and in vivo safety of adult human pancreas organoids |
title_full_unstemmed |
Long-term expansion, genomic stability and in vivo safety of adult human pancreas organoids |
title_sort |
long-term expansion, genomic stability and in vivo safety of adult human pancreas organoids |
publisher |
BMC |
series |
BMC Developmental Biology |
issn |
1471-213X |
publishDate |
2020-02-01 |
description |
Abstract Background Pancreatic organoid systems have recently been described for the in vitro culture of pancreatic ductal cells from mouse and human. Mouse pancreatic organoids exhibit unlimited expansion potential, while previously reported human pancreas organoid (hPO) cultures do not expand efficiently long-term in a chemically defined, serum-free medium. We sought to generate a 3D culture system for long-term expansion of human pancreas ductal cells as hPOs to serve as the basis for studies of human pancreas ductal epithelium, exocrine pancreatic diseases and the development of a genomically stable replacement cell therapy for diabetes mellitus. Results Our chemically defined, serum-free, human pancreas organoid culture medium supports the generation and expansion of hPOs with high efficiency from both fresh and cryopreserved primary tissue. hPOs can be expanded from a single cell, enabling their genetic manipulation and generation of clonal cultures. hPOs expanded for months in vitro maintain their ductal morphology, biomarker expression and chromosomal integrity. Xenografts of hPOs survive long-term in vivo when transplanted into the pancreas of immunodeficient mice. Notably, mouse orthotopic transplants show no signs of tumorigenicity. Crucially, our medium also supports the establishment and expansion of hPOs in a chemically defined, modifiable and scalable, biomimetic hydrogel. Conclusions hPOs can be expanded long-term, from both fresh and cryopreserved human pancreas tissue in a chemically defined, serum-free medium with no detectable tumorigenicity. hPOs can be clonally expanded, genetically manipulated and are amenable to culture in a chemically defined hydrogel. hPOs therefore represent an abundant source of pancreas ductal cells that retain the characteristics of the tissue-of-origin, which opens up avenues for modelling diseases of the ductal epithelium and increasing understanding of human pancreas exocrine biology as well as for potentially producing insulin-secreting cells for the treatment of diabetes. |
topic |
Pancreas Organoid In vivo safety Chemically defined hydrogel Genetic stability Primary cultures |
url |
http://link.springer.com/article/10.1186/s12861-020-0209-5 |
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