生物
原肠化
胚胎干细胞
外胚层
胚胎
内胚层
细胞生物学
中胚层
胚泡
短尾鱼
胚芽层
节点信号
胚胎发生
诱导多能干细胞
遗传学
基因
作者
Shadi Tarazi,Alejandro Aguilera-Castrejon,Carine Joubran,Nadir Ghanem,Shahd Ashouokhi,Francesco Roncato,Emilie Wildschutz,Montaser Haddad,Bernardo Oldak,Elidet Gomez-Cesar,Nir Livnat,Sergey Viukov,Dmitry Lokshtanov,Segev Naveh-Tassa,M. Franklin Rose,Suhair Hanna,Calanit Raanan,Ori Brenner,Merav Kedmi,Hadas Keren‐Shaul
出处
期刊:Cell
[Cell Press]
日期:2022-08-02
卷期号:185 (18): 3290-3306.e25
被引量:159
标识
DOI:10.1016/j.cell.2022.07.028
摘要
In vitro cultured stem cells with distinct developmental capacities can contribute to embryonic or extraembryonic tissues after microinjection into pre-implantation mammalian embryos. However, whether cultured stem cells can independently give rise to entire gastrulating embryo-like structures with embryonic and extraembryonic compartments remains unknown. Here, we adapt a recently established platform for prolonged ex utero growth of natural embryos to generate mouse post-gastrulation synthetic whole embryo models (sEmbryos), with both embryonic and extraembryonic compartments, starting solely from naive ESCs. This was achieved by co-aggregating non-transduced ESCs, with naive ESCs transiently expressing Cdx2 or Gata4 to promote their priming toward trophectoderm and primitive endoderm lineages, respectively. sEmbryos adequately accomplish gastrulation, advance through key developmental milestones, and develop organ progenitors within complex extraembryonic compartments similar to E8.5 stage mouse embryos. Our findings highlight the plastic potential of naive pluripotent cells to self-organize and functionally reconstitute and model the entire mammalian embryo beyond gastrulation.
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