Long-term in vitro expansion of a human fetal pancreas stem cell that generates all three pancreatic cell lineages
Andersson-Rolf, Amanda; Groot, Kelvin; Korving, Jeroen; Begthel, Harry; Hanegraaf, Maaike A.J.; VanInsberghe, Michael; Salmén, Fredrik; van den Brink, Stieneke; Lopez-Iglesias, Carmen; Peters, Peter J.; Krueger, Daniel; Beumer, Joep; Geurts, Maarten H.; Alemany, Anna; Gehart, Helmuth; Carlotti, Françoise; de Koning, Eelco J.P.; Chuva de Sousa Lopes, Susana M.; van Oudenaarden, Alexander; van Es, Johan H.; Clevers, Hans
(2024) Cell, volume 187, issue 26, pp. 7394 - 7413.e22
(Article)
Abstract
The mammalian pancreas consists of three epithelial compartments: the acini and ducts of the exocrine pancreas and the endocrine islets of Langerhans. Murine studies indicate that these three compartments derive from a transient, common pancreatic progenitor. Here, we report derivation of 18 human fetal pancreas organoid (hfPO) lines from gestational
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weeks 8–17 (8–17 GWs) fetal pancreas samples. Four of these lines, derived from 15 to 16 GWs samples, generate acinar-, ductal-, and endocrine-lineage cells while expanding exponentially for >2 years under optimized culture conditions. Single-cell RNA sequencing identifies rare LGR5+ cells in fetal pancreas and in hfPOs as the root of the developmental hierarchy. These LGR5+ cells share multiple markers with adult gastrointestinal tract stem cells. Organoids derived from single LGR5+ organoid-derived cells recapitulate this tripotency in vitro. We describe a human fetal tripotent stem/progenitor cell capable of long-term expansion in vitro and of generating all three pancreatic cell lineages.
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Keywords: acinar cells, development, endocrine cells, fetal pancreas, human organoids, LGR5, organoids, pancreas, stem cell, tripotent stem cell, General Biochemistry,Genetics and Molecular Biology
ISSN: 0092-8674
Publisher: Elsevier
Note: Publisher Copyright: © 2024 The Author(s)
(Peer reviewed)