Related Experiment Video
Updated: Jul 5, 2025

Author Spotlight: Advancing Reproductive Immunology with a Protocol for the Quantitative Evaluation of Endometrial Immune Cells
Published on: October 13, 2023
Network-based drug repurposing identifies small molecule drugs as immune checkpoint inhibitors for endometrial cancer
Faheem Ahmed1, Anupama Samantasinghar1, Wajid Ali1
1Department of Mechatronics Engineering, Jeju National University, Jeju, Republic of Korea.
Abstract:
Endometrial cancer (EC) is the 6th most common cancer in women around the world. Alone in the United States (US), 66,200 new cases and 13,030 deaths are expected to occur in 2023 which needs the rapid development of potential therapies against EC. Here, a network-based drug-repurposing strategy is developed which led to the identification of 16 FDA-approved drugs potentially repurposable for EC as potential immune checkpoint inhibitors (ICIs). A network of EC-associated immune checkpoint proteins (ICPs)-induced protein interactions (P-ICP) was constructed. As a result of network analysis of P-ICP, top key target genes closely interacting with ICPs were shortlisted followed by network proximity analysis in drug-target interaction (DTI) network and pathway cross-examination which identified 115 distinct pathways of approved drugs as potential immune checkpoint inhibitors. The presented approach predicted 16 drugs to target EC-associated ICPs-induced pathways, three of which have already been used for EC and six of them possess immunomodulatory properties providing evidence of the validity of the strategy. Classification of the predicted pathways indicated that 15 drugs can be divided into two distinct pathway groups, containing 17 immune pathways and 98 metabolic pathways. In addition, drug-drug correlation analysis provided insight into finding useful drug combinations. This fair and verified analysis creates new opportunities for the quick repurposing of FDA-approved medications in clinical trials.
Insights
This study identifies 16 FDA-approved drugs for endometrial cancer (EC) repurposing as immune checkpoint inhibitors (ICIs). The network-based strategy offers new therapeutic opportunities for EC treatment.
Area of Science:
- Oncology
- Pharmacology
- Bioinformatics
Background:
- Endometrial cancer (EC) is a globally prevalent malignancy, necessitating novel therapeutic strategies.
- Current treatment options require development, highlighting the need for drug repurposing.
Purpose of the Study:
- To identify FDA-approved drugs for repurposing as immune checkpoint inhibitors (ICIs) for endometrial cancer (EC).
- To develop a network-based strategy for predicting drug efficacy in EC treatment.
Main Methods:
- Construction of a protein-protein interaction network for EC-associated immune checkpoint proteins (ICPs).
- Network proximity analysis and pathway cross-examination to identify drug-target interactions.
- Drug-drug correlation analysis to explore combination therapies.
Main Results:
- Identification of 16 FDA-approved drugs as potential ICIs for EC.
- Prediction of 115 distinct drug pathways, including 17 immune and 98 metabolic pathways.
- Validation of the strategy with existing EC drugs and drugs possessing immunomodulatory properties.
Conclusions:
- The network-based drug repurposing approach is effective for identifying novel EC therapies.
- The identified drugs offer promising candidates for clinical trials in EC treatment.
- This strategy facilitates rapid clinical translation of existing medications for endometrial cancer.

