A pendulum of induction between the epiblast and extra-embryonic endoderm supports post-implantation progression
Files
Publication date
2022-10-15
Authors
Vrij, Erik J.
Scholte Op Reimer, Yvonne S.
Fuentes, Laury Roa
Guerreiro, Isabel Misteli
Holzmann, Viktoria
Aldeguer, Javier Frias
Sestini, Giovanni
Koo, Bon Kyoung
Kind, Jop
van Blitterswijk, Clemens A.
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
cc_by
Abstract
Embryogenesis is supported by dynamic loops of cellular interactions. Here, we create a partial mouse embryo model to elucidate the principles of epiblast (Epi) and extra-embryonic endoderm co-development (XEn). We trigger naive mouse embryonic stem cells to form a blastocyst-stage niche of Epi-like cells and XEn-like cells (3D, hydrogel free and serum free). Once established, these two lineages autonomously progress in minimal medium to form an inner pro-amniotic-like cavity surrounded by polarized Epi-like cells covered with visceral endoderm (VE)-like cells. The progression occurs through reciprocal inductions by which the Epi supports the primitive endoderm (PrE) to produce a basal lamina that subsequently regulates Epi polarization and/or cavitation, which, in return, channels the transcriptomic progression to VE. This VE then contributes to Epi bifurcation into anterior- and posterior-like states. Similarly, boosting the formation of PrE-like cells within blastoids supports developmental progression. We argue that self-organization can arise from lineage bifurcation followed by a pendulum of induction that propagates over time.
Keywords
Blastoids, Embryonic stem cells, Extra-embryonic endoderm/epiblast rosette, Post-implantation development, Primitive endoderm, Pro-amniotic cavity, Molecular Biology, Developmental Biology
Citation
Vrij, E J, Scholte Op Reimer, Y S, Fuentes, L R, Guerreiro, I M, Holzmann, V, Aldeguer, J F, Sestini, G, Koo, B K, Kind, J, van Blitterswijk, C A & Rivron, N C 2022, 'A pendulum of induction between the epiblast and extra-embryonic endoderm supports post-implantation progression', Development (Cambridge, England), vol. 149, no. 20, dev192310. https://doi.org/10.1242/dev.192310