Assembly of a stem cell-derived human postimplantation embryo model
Abstract
The embryonic and extraembryonic tissue interactions underlying human embryogenesis at implantation stages are not currently understood. We have generated a pluripotent stem cell-derived model that mimics aspects of peri-implantation development, allowing tractable experimentation otherwise impossible in the human embryo. Activation of the extraembryonic lineage-specific transcription factors GATA6 and SOX17 (hypoblast factors) or GATA3 and TFAP2C (encoding AP2γ; trophoblast factors) in human embryonic stem (ES) cells drive conversion to extraembryonic-like cells. When combined with wild-type ES cells, self-organized embryo-like structures form in the absence of exogenous factors, termed human inducible embryoids (hiEmbryoids). The epiblast-like domain of hiEmbryoids polarizes and differentiates in response to extraembryonic-secreted extracellular matrix and morphogen cues. Extraembryonic mesenchyme, amnion and primordial germ cells are specified in hiEmbryoids in a stepwise fashion. After establishing stable inducible ES lines and converting ES cells to RSeT culture media, the protocol takes 7–10 d to generate hiEmbryoids. Generation of hiEmbryoids can be performed by researchers with basic expertise in stem cell culture.
Copyright and License
© 2024, Crown.
Acknowledgement
The authors thank members of the Zernicka-Goetz laboratory and Macarena Fuentes-Guajardo for helpful discussion and troubleshooting of the protocol, as well as J. Hanna and A. Brivanlou for providing cell lines. This work was supported by the Wellcome Trust (207415/Z/17/Z), the European Research Council (669198), the Allen Discovery Center for Lineage Tracing, Open Atlas and NOMIS award grants to M.Z.-G. C.W.G. was supported by the Leverhulme Trust. B.A.T.W. was supported by the Gates Cambridge Trust.
Conflict of Interest
C.W.G., B.A.T.W. and M.Z.-G. are inventors on a patent application (number 63/403,684). Specific aspect of the manuscript covered in patent application: stem cell-derived model of the human embryo. M.Z.-G. holds several patent applications on the generation of stem cell-derived embryo models.
Additional details
Identifiers
- PMID
- 39261744
Related works
- Describes
- Journal Article: https://rdcu.be/e9cDT (URL)
Funding
- Wellcome Trust
- 207415/Z/17/Z
- European Research Council
- 669198
- Nomis Foundation
- Leverhulme Trust
- Gates Cambridge Trust
Dates
- Available
-
2024-09-11Version of record
Caltech Custom Metadata
- Caltech groups
- Division of Biology and Biological Engineering (BBE)
- Publication Status
- Published