Epiblast inducers capture mouse trophectoderm stem cells in vitro and pattern blastoids for implantation in utero

Publication date

2022-07-07

Authors

Seong, Jinwoo
Frias-Aldeguer, Javier
Holzmann, Viktoria
Kagawa, Harunobu
Sestini, Giovanni
Heidari Khoei, Heidar
Scholte Op Reimer, Yvonne
Kip, Maarten
Pradhan, Saurabh J.
Verwegen, Lucas

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Document Type

Article

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Abstract

The embryo instructs the allocation of cell states to spatially regulate functions. In the blastocyst, patterning of trophoblast (TR) cells ensures successful implantation and placental development. Here, we defined an optimal set of molecules secreted by the epiblast (inducers) that captures in vitro stable, highly self-renewing mouse trophectoderm stem cells (TESCs) resembling the blastocyst stage. When exposed to suboptimal inducers, these stem cells fluctuate to form interconvertible subpopulations with reduced self-renewal and facilitated differentiation, resembling peri-implantation cells, known as TR stem cells (TSCs). TESCs have enhanced capacity to form blastoids that implant more efficiently in utero due to inducers maintaining not only local TR proliferation and self-renewal, but also WNT6/7B secretion that stimulates uterine decidualization. Overall, the epiblast maintains sustained growth and decidualization potential of abutting TR cells, while, as known, distancing imposed by the blastocyst cavity differentiates TR cells for uterus adhesion, thus patterning the essential functions of implantation.

Keywords

blastocyst, blastoid, induction, trophoblast stem cells, trophectoderm stem cells, trophectoderm, implantation, decidualization, Molecular Medicine, Genetics, Cell Biology

Citation

Seong, J, Frias-Aldeguer, J, Holzmann, V, Kagawa, H, Sestini, G, Heidari Khoei, H, Scholte Op Reimer, Y, Kip, M, Pradhan, S J, Verwegen, L, Vivié, J, Li, L, Alemany, A, Korving, J, Darmis, F, van Oudenaarden, A, ten Berge, D, Geijsen, N & Rivron, N C 2022, 'Epiblast inducers capture mouse trophectoderm stem cells in vitro and pattern blastoids for implantation in utero', Cell stem cell, vol. 29, no. 7, pp. 1102-1118.e8. https://doi.org/10.1016/j.stem.2022.06.002