Related Experiment Video
Updated: Jun 13, 2026

Drug Repurposing Hypothesis Generation Using the "RE:fine Drugs" System
Published on: December 11, 2016
A Drug Repurposing Strategy for a New Cause of Endometrial Infertility: Unveiling Promising New Treatments
Antonio Parraga-Leo1,2, Patricia Sebastian-Leon2, Josefa María Sanchez-Reyes1,2
1Department of Paediatrics, Obstetrics and Gynecology, University of Valencia, Av. Blasco Ibáñez 15, 46010 Valencia, Spain.
Study Question:
Which mechanisms of action and candidate drugs can be used to treat endometrial failure caused by molecular alterations rather than endometrial timing?
Summary Answer:
Genistein, pioglitazone, alprostadil, flunisolide, and tenoxicam emerged as potential therapies to treat two molecular causes of endometrial failure not originating in endometrial timing.
What Is Known Already:
Several studies have described molecular profiles of endometrial failure unrelated to endometrial timing and proposed diagnostic tools based on clinical and transcriptomic data, but effective therapeutic options remain lacking. Hence, there is a pressing need for tailored treatments to enable personalised medicine in endometrial-factor infertility.
Study Design Size Duration:
This multicentre prospective study, conducted at 5 fertility clinics in Spain between January 2019 and August 2022, included 192 patients undergoing in vitro fertilisation with hormone replacement therapy, whose endometrial biopsies were collected during the mid-secretory phase.
Participants/Materials Setting Methods:
Of 291 endometrial biopsies, 192 met the quality criteria and 161 were classified according to clinical and transcriptomic data using a semi-supervised learning model for prognosis. Before classification, transcriptomic variation related to endometrial timing was corrected using our validated transcriptomic endometrial-dating model. Profiles were analysed using systems pharmacology approaches combining network analysis and reversal signature matching to identify therapeutic drugs capable of reversing molecular disruption. Candidate drugs were grouped by mechanism of action and prioritised by side-effect profile. Selected drugs were validated in endometrial cells through RT-PCR, F-actin staining, and enzyme-linked immunosorbent assays.
Main Results And The Role Of Chance:
Four transcriptomic profiles were identified using artificial intelligence models, each with distinct clinical implications. Two profiles were associated with poor prognosis: clinical miscarriage-associated (CMA, n = 27) and biochemical miscarriage-associated (BMA, n = 16). CMA was characterised by upregulation of differentiation-related genes and BMA by upregulation of immune-related genes. The 4 profiles were homogeneous in demographic and embryological parameters (age, BMI, and embryo quality), reinforcing their biological relevance. Approved drugs capable of reversing these disrupted expression patterns were identified. Both BMA and CMA were linked to abnormal decidualisation, while BMA also showed immune dysregulation. Genistein and pioglitazone promoted decidualisation in vitro, whereas alprostadil, flunisolide, and tenoxicam inhibited immune responses in endometrial cell cultures, supporting their potential therapeutic role in endometrial failure not originating in endometrial timing.
Limitations Reasons For Caution:
Although our artificial intelligence-based stratification model revealed clinical and functional differences among profiles, it was designed for drug repurposing rather than predictive diagnosis. A larger, specifically designed study would be required to validate predictive performance and generalisability. Further clinical trials are needed to evaluate the proposed drugs as personalised treatments for this condition.
Wider Implications Of The Findings:
This is the first application of a systems-based drug repurposing strategy in IVF to develop tailored therapeutic interventions. We propose genistein, pioglitazone, alprostadil, flunisolide, and tenoxicam as approved, safe drugs identified through an evidence-based approach that could prevent loss of good-quality embryos and miscarriage due to maternal endometrial factors. These findings, supported by functional in vitro validation, pave the way for future clinical trials advancing personalised medicine in endometrial-factor infertility.
Trial Registration Number:
Not applicable.
Insights
This study identified potential drugs like genistein and pioglitazone to treat molecular causes of endometrial failure, aiming to improve in vitro fertilization success rates and reduce miscarriage. These therapies target abnormal decidualization and immune responses, offering personalized medicine for infertility.
Area of Science:
- Reproductive Medicine
- Genomics
- Pharmacology
Background:
- Endometrial failure, unrelated to timing, presents molecular alterations but lacks effective treatments.
- Personalized medicine approaches are needed for endometrial-factor infertility.
Purpose of the Study:
- To identify mechanisms of action and candidate drugs for treating endometrial failure caused by molecular alterations.
- To explore therapeutic options beyond endometrial timing for infertility.
Main Methods:
- A multicenter prospective study analyzed 192 endometrial biopsies from IVF patients using transcriptomic data and AI.
- Systems pharmacology and network analysis identified drugs capable of reversing molecular disruptions.
- Candidate drugs were validated in endometrial cells via RT-PCR, F-actin staining, and ELISAs.
Main Results:
- Four transcriptomic profiles were identified, two associated with poor prognosis (CMA and BMA) linked to abnormal decidualization and immune dysregulation.
- Genistein and pioglitazone promoted decidualization; alprostadil, flunisolide, and tenoxicam inhibited immune responses in vitro.
- Approved drugs were identified as potential therapies for endometrial failure not originating in timing.
Conclusions:
- Genistein, pioglitazone, alprostadil, flunisolide, and tenoxicam are proposed as potential personalized treatments for endometrial failure.
- This study demonstrates a systems-based drug repurposing strategy for tailored interventions in IVF.
- Further clinical trials are necessary to validate these drugs for preventing embryo loss and miscarriage.
More Related Videos
07:40Co-transplantation of Human Ovarian Tissue with Engineered Endothelial Cells: A Cell-based Strategy Combining Accelerated Perfusion with Direct Paracrine Delivery
Published on: May 16, 2018
03:01Author Spotlight: A Reproductive Hysteroscopy Approach for Complete Endometrial Polyp Removal and Enhanced Endometrial Receptivity
Published on: August 2, 2024
Related Concept Videos
Drug Discovery: Overview
Pharmacogenomics: Identification of New Drug Targets
Intrauterine Drug Delivery Systems