Stage-specific signaling through TGFβ family members and WNT regulates patterning and pancreatic specification of human pluripotent stem cells

The generation of insulin-producing β-cells from human pluripotent stem cells is dependent on efficient endoderm induction and appropriate patterning and specification of this germ layer to a pancreatic fate. In this study, we elucidated the temporal requirements for TGFβ family members and canonica...

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Veröffentlicht in:Development (Cambridge) 2011-03, Vol.138 (5), p.861-871
Hauptverfasser: Nostro, M Cristina, Sarangi, Farida, Ogawa, Shinichiro, Holtzinger, Audrey, Corneo, Barbara, Li, Xueling, Micallef, Suzanne J, Park, In-Hyun, Basford, Christina, Wheeler, Michael B, Daley, George Q, Elefanty, Andrew G, Stanley, Edouard G, Keller, Gordon
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Sprache:eng
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Zusammenfassung:The generation of insulin-producing β-cells from human pluripotent stem cells is dependent on efficient endoderm induction and appropriate patterning and specification of this germ layer to a pancreatic fate. In this study, we elucidated the temporal requirements for TGFβ family members and canonical WNT signaling at these developmental stages and show that the duration of nodal/activin A signaling plays a pivotal role in establishing an appropriate definitive endoderm population for specification to the pancreatic lineage. WNT signaling was found to induce a posterior endoderm fate and at optimal concentrations enhanced the development of pancreatic lineage cells. Inhibition of the BMP signaling pathway at specific stages was essential for the generation of insulin-expressing cells and the extent of BMP inhibition required varied widely among the cell lines tested. Optimal stage-specific manipulation of these pathways resulted in a striking 250-fold increase in the levels of insulin expression and yielded populations containing up to 25% C-peptide+ cells.
ISSN:0950-1991
1477-9129
DOI:10.1242/dev.055236