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May 2, 20264 citations

An in vitro menstrual cycle using organoids captures epithelial cell transitions during menstruation and regeneration of the human endometrium.

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ΚΝΚωνσταντίνα ΝικολακοπούλουWYWeand YbañezLKLhéanna Klaeylé

Key Points

  • This research aims to develop an in vitro model of the menstrual cycle to study the dynamic changes in the endometrium during menstruation and regeneration.
  • Established an in vitro menstrual cycle (IVMC) using human endometrial organoids.
  • Validated the IVMC against in vivo samples through histological, transcriptomic, and proteomic analyses.
  • Analyzed the role of WNT7A in organoid survival and epithelial regeneration.
  • During menstruation, organoids showed a distinct transcriptomic signature, with increased WNT7A expression.
  • Loss of WNT7A significantly compromised organoid survival, indicating its critical role.
  • The regenerative luminal epithelium established interactions with vasculature, acting as a signaling hub during regeneration.

Abstract

Menstruation is an unusual process in which the human endometrium undergoes cyclical shedding with scarless regeneration. Despite its pivotal role in reproductive health, the cellular states and interactions orchestrating this process remain poorly defined, largely due to the lack of in vitro systems that capture the inaccessible perimenstrual window. We use human endometrial organoids to establish an in vitro menstrual cycle (IVMC) protocol that recapitulates cyclical epithelial dynamics. We validate the IVMC by benchmarking against in vivo samples spanning the menstrual window through histology, transcriptomic, and multiplex secreted-protein analysis. During menstruation, the in vivo luminal epithelium acquires a distinct transcriptomic signature, characterized by WNT7A expression. Loss of WNT7A compromises long-term organoid survival, highlighting its functional importance. The regeneration-associated luminal epithelium acts as a signaling hub during regeneration through interactions with the vasculature. This work opens new avenues to dissect the unique regenerative program of the endometrium in health and disease.

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Cite This Study

Νικολακοπούλου et al. (2026) studied this question.

synapsesocial.com/papers/69f5951171405d493a000095https://doi.org/10.1016/j.stem.2026.04.005
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