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Updated: Jan 9, 2026

Drug Repurposing Hypothesis Generation Using the "RE:fine Drugs" System
Published on: December 11, 2016
Drug repurposing in gynaecological cancers: Proven drugs for new challenges
Amani Alghalayini1, Farhana A Sarker1, Kristie-Ann Dickson1
1Translational Oncology Group, School of Life Sciences, Faculty of Science, University of Technology Sydney, Ultimo, NSW 2007, Australia.
Abstract:
Gynaecological malignancies, including cervical, endometrial, ovarian, vaginal and vulval cancers, pose therapeutic challenges that contribute to this group being the third most frequent cause of cancer-related deaths globally in women. While advances have been made in both screening for cervical cancer and immunisation against human papillomavirus strains in some countries, other gynaecological cancers have not seen improvements in early screening and prevention strategies. Drugs inhibiting poly (ADP-ribose) polymerase (PARP) have been incorporated into the clinical management of homologous recombination-deficient ovarian cancers, including as maintenance therapies post-surgery; however, these constitute only around half of all ovarian cancers. Developing new therapeutic options for all gynaecological malignancies, including those that demonstrate innate or acquired resistance to standard-of-care chemotherapeutic regimens, remains a challenge. Drug repurposing, defined as the repositioning of drugs that have been approved for the treatment of specific indications to treat other conditions, demonstrates strong potential for the clinical management of gynaecological malignancies. This review highlights diverse drug repurposing approaches applied to gynaecological cancers. Examples include computational methods such as disease and drug signature matching, network or pathway mapping, genetic association studies, drug similarity networks, molecular docking, machine learning, and serendipitous clinical observations. High-throughput compound library and drug-based phenotypic screening also contribute to candidate identification. Repurposed drugs with established safety and pharmacological profiles can accelerate therapeutic discovery; however, some regulatory and industry barriers remain. Coupled with advanced patient-centred technologies, 3D tumoroids, tumour-on-a-chip, and microfluidic systems, drug repurposing strategies promise to advance personalised medicine and improve survival outcomes for women with gynaecological malignancies.
Insights
Drug repurposing offers new hope for gynecological cancers, which are a major cause of cancer deaths in women. This strategy uses existing drugs to treat these challenging malignancies, potentially improving patient outcomes.
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Gynecological malignancies are a leading cause of cancer deaths in women globally.
- Current treatments face challenges, especially for cancers resistant to standard therapies.
- Advances in cervical cancer screening and HPV vaccination exist, but other gynecological cancers lack similar prevention strategies.
Purpose of the Study:
- To review diverse drug repurposing approaches for gynecological cancers.
- To highlight computational and screening methods for identifying repurposed drug candidates.
- To discuss the potential of drug repurposing in personalized medicine for gynecological malignancies.
Main Methods:
- Computational approaches: disease/drug signature matching, network mapping, genetic association studies, drug similarity networks, molecular docking, machine learning.
- High-throughput screening of compound libraries and drug-based phenotypic screening.
- Analysis of serendipitous clinical observations.
Main Results:
- Drug repurposing identifies existing drugs for gynecological cancer treatment.
- Computational and screening methods accelerate the discovery of potential repurposed drugs.
- Repurposed drugs with known safety profiles can speed up therapeutic development.
Conclusions:
- Drug repurposing holds significant promise for managing gynecological malignancies, including resistant cases.
- Integration with advanced technologies like tumoroids and microfluidic systems can enhance personalized medicine approaches.
- Drug repurposing strategies can improve survival outcomes for women with gynecological cancers.
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