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April 3, 2026Nature Physics0 citationsOpen Access

Boundary-guided cell alignment drives mouse epiblast maturation

TITakafumi IchikawaPGPamela C. GuruciagaSHShuchang Hu

Key Points

  • Investigate the mechanisms driving epiblast cell alignment and its impact on tissue architecture during mouse development.
  • Analyzed cell orientation dynamics in mouse epiblast with respect to visceral endoderm and extraembryonic tissues.
  • Performed knockout experiments for laminin γ1 and integrin β1 to assess their role in cell adhesion and patterning.
  • Utilized topological defect theory to predict proamniotic cavity nucleation.
  • Examined ERK activation in relation to epiblast maturation.
  • Epiblast cells orient perpendicular to the visceral endoderm boundary containing laminin and integrin β1.
  • Knockout of laminin γ1 and integrin β1 disrupts cell alignment and adhesion at the tissue boundaries.
  • The established epiblast pattern influences ERK activation, crucial for successful epiblast maturation.

Abstract

Abstract Symmetry breaking and pattern formation occur throughout embryonic development. In early mouse development, a mass of non-polarized epiblast cells in the blastocyst forms the egg cylinder, while cells become apico-basally polarized and build a radial configuration. However, it remains unclear what drives the formation of this tissue architecture. Here we demonstrate that the orientational patterning of epiblast cells is dictated by heterogeneous tissue boundaries, which then defines central lumen positioning. We show that epiblast cells progressively orient perpendicular to the visceral endoderm boundary—which is enriched with the basement membrane protein laminin and the cell surface receptor active integrin β1—but parallel to the extraembryonic ectoderm interface. These orientation dynamics are consistent with general boundary-induced alignment effects in polar materials, with a topological defect predicting the position at which the proamniotic cavity nucleates. The knockout of laminin γ1 and integrin β1 confirms the essential role of adhesion at the epiblast and visceral endoderm boundary. The established epiblast pattern, in turn, facilitates ERK activation—a key cell signalling pathway—to ensure proper epiblast maturation. Together, these findings present the mechanistic basis and functional significance of epiblast tissue patterning.

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Cite This Study

Ichikawa et al. (2026) studied this question.

synapsesocial.com/papers/69cf5dc55a333a821460baedhttps://doi.org/10.1038/s41567-026-03176-9
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