Publication | Open Access
FGF Inhibition Directs BMP4-Mediated Differentiation of Human Embryonic Stem Cells to Syncytiotrophoblast
90
Citations
66
References
2012
Year
Human GrowthBone Morphogenetic ProteinTissue DevelopmentBone BiologyBmp4-mediated DifferentiationBone Morphogenic ProteinCraniofacial DevelopmentFibroblast Growth FactorFgf InhibitionStem CellsCell SignalingBmp ActivationMolecular SignalingHealth SciencesMorphogenesisOrganogenesisCell BiologyDevelopmental BiologyStem Cell ResearchFgf SignalingMedicineCell DevelopmentEmbryonic Stem Cell
Bone morphogenetic protein (BMP) signaling is known to support differentiation of human embryonic stem cells (hESCs) into mesoderm and extraembryonic lineages, whereas other signaling pathways can largely influence this lineage specification. Here, we set out to reinvestigate the influence of ACTIVIN/NODAL and fibroblast growth factor (FGF) pathways on the lineage choices made by hESCs during BMP4-driven differentiation. We show that BMP activation, coupled with inhibition of both ACTIVIN/NODAL and FGF signaling, induces differentiation of hESCs, specifically to βhCG hormone-secreting multinucleated syncytiotrophoblast and does not support induction of embryonic and extraembryonic lineages, extravillous trophoblast, and primitive endoderm. It has been previously reported that FGF2 can switch BMP4-induced hESC differentiation outcome to mesendoderm. Here, we show that FGF inhibition alone, or in combination with either ACTIVIN/NODAL inhibition or BMP activation, supports hESC differentiation to hCG-secreting syncytiotrophoblast. We show that the inhibition of the FGF pathway acts as a key in directing BMP4-mediated hESC differentiation to syncytiotrophoblast.
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