Stem Cell


In ESC, BMP/TGF-β signaling pathway plays a key role in maintaining pluripotency and self-renewal. It signals through Smad proteins, and the FGF signaling pathway, which activates the MAPK and Akt pathways. The Wnt signaling pathway also promotes pluripotency. OCT-4, SOX2, and NANOG are three main transcription factors that are expressed and activated by these pathways. Induced pluripotent stem cells (iPSC) are pluripotent cells that can be generated from differentiated cells with forced expression of specific reprogramming factors. Both ESC and iPSC can be induced to develop into distinct cell types that associated with three primary germ layers: ectoderm, mesoderm and endoderm. Signaling pathways that control the development of these cell lineages, including BMP/TGF-β, Notch, Wnt/β-catenin, Hedgehog and Hippo pathways, which regulate cell division, growth and differentiation. Defects in stem cell signaling are related to developmental disorders and cancer.
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B5979 CCT2515451 CitationSummary: Orally bioavailable and potent WNT signaling inhibitor -
A8719 ML 239Summary: inhibitor of the breast cancer stem cells -
B6029 NapabucasinTarget: STATSummary: STAT3 inhibitor -
A8735 XMU-MP-12 CitationTarget: MSTSummary: MST1/2 inhibitor, potent and selective -
B6059 Wnt agonist 11 CitationSummary: agonist of Wnt signaling pathway -
K1022 Mouse iPSC Chemical Reprogramming Cocktails KitSummary: Chemical reprogramming from somatic cells to pluripotent stem cells. -
B1536 AZD10801 CitationTarget: GSK-3Summary: GSK3βinhibitor -
B1193 NirogacestatSummary: An orally active, potent, selective, reversible, non-competitive γ-secretase inhibitor. -
B1021 EI1Summary: EZH2 inhibitor -
B1237 LH846Summary: Casein kinases inhibitor

