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Early developmental plasticity enables the induction of an intermediate extraembryonic cell state

  • Anusha Sathyanarayanan
  • , Elizabeth Ing-Simmons
  • , Rui Chen
  • , Hyun Woo Jeong
  • , Hatice O. Ozguldez
  • , Rui Fan
  • , Binyamin Duethorn
  • , Kee Pyo Kim
  • , Yung Su Kim
  • , Martin Stehling
  • , Heike Brinkmann
  • , Hans R. Schöler
  • , Ralf H. Adams
  • , Juan M. Vaquerizas
  • , Ivan Bedzhov
  • Max Planck Institute for Molecular Biomedicine
  • Medical Research Council
  • Imperial College Healthcare NHS Trust
  • University of Münster

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Two fundamental elements of pre-implantation embryogenesis are cells' intrinsic self-organization program and their developmental plasticity, which allows embryos to compensate for alterations in cell position and number; yet, these elements are still poorly understood. To be able to decipher these features, we established culture conditions that enable the two fates of blastocysts' extraembryonic lineages-the primitive endoderm and the trophectoderm-to coexist. This plasticity emerges following the mechanisms of the first lineage segregation in the mouse embryo, and it manifests as an extended potential for extraembryonic chimerism during the pre-implantation embryogenesis. Moreover, this shared state enables robust assembly into higher-order blastocyst-like structures, thus combining both the cell fate plasticity and self-organization features of the early extraembryonic lineages.

Original languageEnglish
Article numberabl9583
JournalScience advances
Volume8
Issue number44
DOIs
StatePublished - Nov 2022

Bibliographical note

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