3D Modeling of Esophageal Development using Human PSC-Derived Basal Progenitors Reveals a Critical Role for Notch Signaling

利用人多能干细胞衍生的基底祖细胞进行食管发育的三维建模揭示了Notch信号通路的关键作用

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作者:Yongchun Zhang ,Ying Yang ,Ming Jiang ,Sarah Xuelian Huang ,Wanwei Zhang ,Denise Al Alam ,Soula Danopoulos ,Munemasa Mori ,Ya-Wen Chen ,Revathi Balasubramanian ,Susana M Chuva de Sousa Lopes ,Carlos Serra ,Monika Bialecka ,Eugene Kim ,Sijie Lin ,Ana Luisa Rodrigues Toste de Carvalho ,Paul N Riccio ,Wellington V Cardoso ,Xin Zhang ,Hans-Willem Snoeck ,Jianwen Que

Abstract

Pluripotent stem cells (PSCs) could provide a powerful system to model development of the human esophagus, whose distinct tissue organization compared to rodent esophagus suggests that developmental mechanisms may not be conserved between species. We therefore established an efficient protocol for generating esophageal progenitor cells (EPCs) from human PSCs. We found that inhibition of TGF-ß and BMP signaling is required for sequential specification of EPCs, which can be further purified using cell-surface markers. These EPCs resemble their human fetal counterparts and can recapitulate normal development of esophageal stratified squamous epithelium during in vitro 3D cultures and in vivo. Importantly, combining hPSC differentiation strategies with mouse genetics elucidated a critical role for Notch signaling in the formation of this epithelium. These studies therefore not only provide an efficient approach to generate EPCs, but also offer a model system to study the regulatory mechanisms underlying development of the human esophagus.

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