神经形成
细胞生物学
生物
神经管
器官发生
原肠化
胚胎干细胞
脊索
神经板
卵黄囊
干细胞
胚胎
内胚层
胚芽层
外胚层
短尾鱼
中胚层
斑马鱼
胚胎发生
外代谢
遗传学
诱导多能干细胞
基因
作者
Gianluca Amadei,Charlotte E. Handford,Chengxiang Qiu,Joachim De Jonghe,Hannah Greenfeld,Martin Tran,Beth Martin,Dong-Yuan Chen,Alejandro Aguilera-Castrejon,Jacob Hanna,Michael B. Elowitz,Florian Hollfelder,Jay Shendure,David M. Glover,Magdalena Zernicka‐Goetz
出处
期刊:Nature
[Springer Nature]
日期:2022-08-25
卷期号:610 (7930): 143-153
被引量:87
标识
DOI:10.1038/s41586-022-05246-3
摘要
Abstract Embryonic stem (ES) cells can undergo many aspects of mammalian embryogenesis in vitro 1–5 , but their developmental potential is substantially extended by interactions with extraembryonic stem cells, including trophoblast stem (TS) cells, extraembryonic endoderm stem (XEN) cells and inducible XEN (iXEN) cells 6–11 . Here we assembled stem cell-derived embryos in vitro from mouse ES cells, TS cells and iXEN cells and showed that they recapitulate the development of whole natural mouse embryo in utero up to day 8.5 post-fertilization. Our embryo model displays headfolds with defined forebrain and midbrain regions and develops a beating heart-like structure, a trunk comprising a neural tube and somites, a tail bud containing neuromesodermal progenitors, a gut tube, and primordial germ cells. This complete embryo model develops within an extraembryonic yolk sac that initiates blood island development. Notably, we demonstrate that the neurulating embryo model assembled from Pax6 -knockout ES cells aggregated with wild-type TS cells and iXEN cells recapitulates the ventral domain expansion of the neural tube that occurs in natural, ubiquitous Pax6 -knockout embryos. Thus, these complete embryoids are a powerful in vitro model for dissecting the roles of diverse cell lineages and genes in development. Our results demonstrate the self-organization ability of ES cells and two types of extraembryonic stem cells to reconstitute mammalian development through and beyond gastrulation to neurulation and early organogenesis.
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