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Establishing 3D Endometrial Organoids from the Mouse Uterus
Published on: January 6, 2023
Mouse double minute homologue 2 (MDM2) downregulation by miR-661 impairs human endometrial epithelial cell adhesive
Amy Winship1, Amanda Ton1, Michelle Van Sinderen1
1Centre for Reproductive Health, Hudson Institute of Medical Research, Clayton, Vic. 3168, Australia.
Abstract:
Human blastocysts that fail to implant following IVF secrete elevated levels of miR-661, which is taken up by primary human endometrial epithelial cells (HEECs) and impairs their adhesive capability. MicroRNA miR-661 downregulates mouse double minute homologue 2 (MDM2) and MDM4 in other epithelial cell types to activate p53; however, this has not been examined in the endometrium. In this study MDM2 protein was detected in the luminal epithelium of the endometrium, the site of blastocyst attachment, during the mid secretory receptive phase of the menstrual cycle. The effects of miR-661 on gene expression in and adhesion of endometrial cells was also examined. MiR-661 overexpression consistently downregulated MDM2 but not MDM4 or p53 gene expression in the Ishikawa endometrial epithelial cell line and primary HEEC. Adhesion assays were performed on the real-time monitoring xCELLigence system and by co-culture using Ishikawa cells and HEECs with HTR8/SVneo trophoblast spheroids. Targeted siRNA-mediated knockdown of MDM2 in endometrial epithelial cells reduced Ishikawa cell adhesion (P<0.001) and also reduced HTR8/SVneo trophoblast spheroid adhesion to Ishikawa cells (P<0.05) and HEECs (P<0.05). MDM2 overexpression using recombinant protein treatment resulted in enhanced HTR8/SVneo trophoblast spheroid adhesion to Ishikawa cells (P<0.01) and HEECs (P<0.05). This study highlights a potential new mechanism by which human blastocyst-secreted miR-661 reduces endometrial epithelial cell adhesion; via downregulation of MDM2. These findings suggest that MDM2 contributes to endometrial-blastocyst adhesion, implantation and infertility in women.
Insights
Human blastocyst-secreted miR-661 impairs embryo implantation by reducing endometrial cell adhesion through downregulating mouse double minute homologue 2 (MDM2). This suggests MDM2 is crucial for successful implantation and fertility.
Area of Science:
- Reproductive Biology
- Molecular Biology
- Cell Biology
Background:
- Human blastocysts failing to implant after in vitro fertilization (IVF) exhibit increased miR-661 secretion.
- This microRNA is absorbed by endometrial cells, diminishing their adhesive properties.
- The impact of miR-661 on endometrial MDM2, MDM4, and p53 has not been previously investigated.
Purpose of the Study:
- To investigate the role of microRNA miR-661 in regulating endometrial epithelial cell adhesion.
- To determine the effect of miR-661 on mouse double minute homologue 2 (MDM2) expression in endometrial cells.
- To explore the contribution of MDM2 to blastocyst-endometrial adhesion and implantation.
Main Methods:
- Detection of MDM2 protein in human endometrial luminal epithelium during the receptive phase.
- Assessment of miR-661's impact on gene expression and adhesion in Ishikawa cells and primary human endometrial epithelial cells (HEECs).
- Evaluation of trophoblast spheroid adhesion using real-time monitoring (xCELLigence) and co-culture assays following MDM2 manipulation (knockdown and overexpression).
Main Results:
- MiR-661 overexpression led to consistent downregulation of MDM2 in endometrial cells, but not MDM4 or p53.
- MDM2 knockdown in endometrial cells significantly reduced both Ishikawa cell and trophoblast spheroid adhesion.
- MDM2 overexpression enhanced trophoblast spheroid adhesion to endometrial cells.
Conclusions:
- Human blastocyst-secreted miR-661 may reduce endometrial epithelial cell adhesion by downregulating MDM2.
- MDM2 plays a significant role in endometrial-blastocyst adhesion and implantation.
- Dysregulation of MDM2 may contribute to infertility in women.
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