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In Vitro Gene Expression Profiling of Quantum Molecular Resonance Effects on Human Endometrium Models: A Preliminary
Angela Grassi1, Maria Santa Rocca2, Marco Noventa3
1Veneto Institute of Oncology IOV-IRCCS, 35128 Padova, Italy.
Genes
|March 28, 2025
Summary
Quantum Molecular Resonance (QMR) exposure significantly up-regulates key endometrial receptivity genes in vitro and in vivo. This suggests QMR may offer a novel approach to enhance endometrial receptivity for improved fertility outcomes.
Area of Science:
- Reproductive Biology
- Biophysics
- Molecular Genetics
Background:
- Improving endometrial receptivity (ER) is crucial for successful implantation.
- Investigating novel therapeutic modalities for ER is an active area of research.
Purpose of the Study:
- To investigate the effect of Quantum Molecular Resonance (QMR) on endometrial receptivity.
- To assess QMR's impact on the expression of ER-related genes and cell toxicity.
Main Methods:
- Ishikawa cells and human endometrial biopsies were utilized.
- QMR exposure was applied at varying power units (PU) and durations.
- Gene expression was analyzed using quantitative PCR and microarray analysis.
Main Results:
- QMR exposure significantly up-regulated ER-related genes (HOXA10, HOXA11, LIF, ITGB3, ITGAV) in a power-dependent manner.
- Repeated QMR exposure demonstrated sustained gene up-regulation with negligible cytotoxicity.
- Microarray analysis revealed enrichment of pathways related to proteasome system, cell adhesion, and cell cycle.
Conclusions:
- QMR shows a potential favorable impact on endometrial receptivity.
- These findings suggest QMR as a promising non-invasive method to enhance ER.

