Single-cell analysis of mouse uterus at the invasion phase of embryo implantation

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Abstract

Background: Embryo implantation into the uterus is a crucial step for human reproduction. A hypothesis has been proposed that the molecular circuit invented by trophoblasts for invasive embryo implantation during evolution might be misused by cancer cells to promote malignancy. Unfortunately, our current understanding of the molecular mechanism underlying embryo implantation is far from complete. Results: Here we used the mouse as an animal model and generated a single-cell transcriptomic atlas of the embryo implantation site of mouse uterus at the invasion phase of embryo implantation on gestational day 6. We revealed 23 distinct cell clusters, including 5 stromal cell clusters, 2 epithelial cell clusters, 1 smooth muscle cell cluster, 2 pericyte clusters, 4 endothelial cell clusters, and 9 immune cell clusters. Through data analysis, we identified differentially expression changes in all uterine cell types upon embryo implantation. By integrated with single-cell RNA-seq data from E5.5 embryos, we predicted cell–cell crosstalk between trophoblasts and uterine cell types. Conclusions: Our study provides a valuable resource for understanding of the molecular mechanism of embryo implantation.

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He, J. P., Tian, Q., Zhu, Q. Y., & Liu, J. L. (2022). Single-cell analysis of mouse uterus at the invasion phase of embryo implantation. Cell and Bioscience, 12(1). https://doi.org/10.1186/s13578-022-00749-y

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