AI Article Synopsis

  • Current contraceptive methods primarily work by interfering with egg development, fertilization, and embryo implantation using hormonal or physical means, but hormonal pills are less effective at preventing implantation.
  • Researchers developed a high-throughput assay to screen for non-hormonal compounds that could suppress embryo implantation, identifying 174 effective compounds, with Nemadipine-A (P11B5) being the most promising due to its low toxicity.
  • In mouse studies, treatment with Nemadipine-A significantly reduced embryo implantation by downregulating endometrial receptivity markers, suggesting it could be a novel option for non-hormonal contraception.

Article Abstract

Current contraceptive methods interfere with folliculogenesis, fertilization, and embryo implantation by physical or hormonal approaches. Although hormonal contraceptive pills are effective in regulating egg formation, they are less effective in preventing embryo implantation. To explore the use of non-hormonal compounds that suppress embryo implantation, we established a high-throughput spheroid-endometrial epithelial cell co-culture assay to screen the Library of Pharmacologically Active Compounds (LOPAC) for compounds that affect trophoblastic spheroid (blastocyst surrogate) attachment onto endometrial epithelial Ishikawa cells. We identified 174 out of 1280 LOPAC that significantly suppressed BeWo spheroid attachment onto endometrial Ishikawa cells. Among the top 20 compounds, we found the one with the lowest cytotoxicity in Ishikawa cells, P11B5, which was later identified as Nemadipine-A. Nemadipine-A at 10 µM also suppressed BeWo spheroid attachment onto endometrial epithelial RL95-2 cells and primary human endometrial epithelial cells (hEECs) isolated from LH +7/8-day endometrial biopsies. Mice at 1.5 days post coitum (dpc) treated with a transcervical injection of 100 µg/kg Nemadipine-A or 500 µg/kg PRI-724 (control, Wnt-inhibitor), but not 10 µg/kg Nemadipine-A, suppressed embryo implantation compared with controls. The transcript expressions of endometrial receptivity markers, integrin αV () and mucin 1 (), but not β-catenin (), were significantly decreased at 2.5 dpc in the uterus of treated mice compared with controls. The reduction of embryo implantation by Nemadipine-A was likely mediated through suppressing endometrial receptivity molecules and . Nemadipine-A is a potential novel non-hormonal compound for contraception.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103851PMC
http://dx.doi.org/10.3390/ijms23095073DOI Listing

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