细胞生物学
间质细胞
干细胞
谱系标记
谱系(遗传)
类有机物
细胞分化
串扰
器官发生
生物
祖细胞
遗传学
癌症研究
基因
光学
物理
作者
J. Gray Camp,Keisuke Sekine,Tobias Gerber,Henry Loeffler‐Wirth,Hans Binder,Małgorzata Gac,Sabina Kanton,Jorge Kageyama,Georg Damm,Daniel Seehofer,Lenka Belicová,Marc Bickle,Rico Barsacchi,Ryo Okuda,Emi Yoshizawa,Masaki Kimura,Hiroaki Ayabe,Hideki Taniguchi,Takanori Takebe,Barbara Treutlein
出处
期刊:Nature
[Springer Nature]
日期:2017-06-01
卷期号:546 (7659): 533-538
被引量:519
摘要
Conventional two-dimensional differentiation from pluripotency fails to recapitulate cell interactions occurring during organogenesis. Three-dimensional organoids generate complex organ-like tissues; however, it is unclear how heterotypic interactions affect lineage identity. Here we use single-cell RNA sequencing to reconstruct hepatocyte-like lineage progression from pluripotency in two-dimensional culture. We then derive three-dimensional liver bud organoids by reconstituting hepatic, stromal, and endothelial interactions, and deconstruct heterogeneity during liver bud development. We find that liver bud hepatoblasts diverge from the two-dimensional lineage, and express epithelial migration signatures characteristic of organ budding. We benchmark three-dimensional liver buds against fetal and adult human liver single-cell RNA sequencing data, and find a striking correspondence between the three-dimensional liver bud and fetal liver cells. We use a receptor-ligand pairing analysis and a high-throughput inhibitor assay to interrogate signalling in liver buds, and show that vascular endothelial growth factor (VEGF) crosstalk potentiates endothelial network formation and hepatoblast differentiation. Our molecular dissection reveals interlineage communication regulating organoid development, and illuminates previously inaccessible aspects of human liver development.
科研通智能强力驱动
Strongly Powered by AbleSci AI