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使用培养的人类胚胎和类胚胎组装体解析着床前发育。

Dissecting peri-implantation development using cultured human embryos and embryo-like assembloids.

机构信息

State Key Laboratory of Primate Biomedical Research; Institute of Primate Translational Medicine, Kunming University of Science and Technology, Kunming, Yunnan, China.

Yunnan Key Laboratory of Primate Biomedical Research, Kunming, Yunnan, China.

出版信息

Cell Res. 2023 Sep;33(9):661-678. doi: 10.1038/s41422-023-00846-8. Epub 2023 Jul 17.

Abstract

Studies of cultured embryos have provided insights into human peri-implantation development. However, detailed knowledge of peri-implantation lineage development as well as underlying mechanisms remains obscure. Using 3D-cultured human embryos, herein we report a complete cell atlas of the early post-implantation lineages and decipher cellular composition and gene signatures of the epiblast and hypoblast derivatives. In addition, we develop an embryo-like assembloid (E-assembloid) by assembling naive hESCs and extraembryonic cells. Using human embryos and E-assembloids, we reveal that WNT, BMP and Nodal signaling pathways synergistically, but functionally differently, orchestrate human peri-implantation lineage development. Specially, we dissect mechanisms underlying extraembryonic mesoderm and extraembryonic endoderm specifications. Finally, an improved E-assembloid is developed to recapitulate the epiblast and hypoblast development and tissue architectures in the pre-gastrulation human embryo. Our findings provide insights into human peri-implantation development, and the E-assembloid offers a useful model to disentangle cellular behaviors and signaling interactions that drive human embryogenesis.

摘要

对培养胚胎的研究为了解人类着床前的发育提供了深入的认识。然而,着床前谱系发育的详细知识以及潜在的机制仍然不清楚。本文使用三维培养的人类胚胎,报道了着床后早期谱系的完整细胞图谱,并解析了内细胞团和上胚层衍生物的细胞组成和基因特征。此外,我们通过组装原始 hESC 和胚胎外细胞,开发了一个类胚胎组装体(E-assembloid)。利用人类胚胎和 E-assembloid,我们揭示了 WNT、BMP 和 Nodal 信号通路协同作用,但功能不同,共同调控人类着床前的谱系发育。特别地,我们剖析了胚胎外中胚层和胚胎外内胚层特化的机制。最后,开发了一种改进的 E-assembloid,以重现前原肠胚期人类胚胎中的上胚层和下胚层发育以及组织结构。我们的研究结果为人类着床前的发育提供了新的见解,而 E-assembloid 提供了一个有用的模型,可以阐明驱动人类胚胎发生的细胞行为和信号相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8929/10474050/2f0aa697b52d/41422_2023_846_Fig1_HTML.jpg

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