Related Experiment Video
Updated: Dec 15, 2025

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Drugs Repurposing in High-Grade Serous Ovarian Cancer
Manuel Torralba1, Rossella Farra2, Marianna Maddaloni1
1Department of Life Sciences, University of Trieste, Via Giorgeri 1, 34127 Trieste, Italy
Background:
Ovary Carcinoma (OC) is the most lethal gynecological neoplasm due to the late diagnoses and to the common development of resistance to platinum-based chemotherapy. Thus, novel therapeutic approaches are urgently required. In this regard, the strategy of drug repurposing is becoming attractive. By this approach, the effectiveness of a drug originally developed for another indication is tested in a different pathology. The advantage is that data about pharmacokinetic properties and toxicity are already available. Thus, in principle, it is possible to reduce research costs and to speed up drug usage/marketing.
Results:
Here, some noticeable examples of repurposed drugs for OC, such as amiodarone, ruxolitinib, statins, disulfiram, ormeloxifenem, and Quinacrine, are reported. Amiodarone, an antiarrhythmic agent, has shown promising anti-OC activity, although the systemic toxicity should not be neglected. The JAK inhibitor, Ruxolitinib, may be employed particularly in coadministration with standard OC therapy as it synergistically interacts with platinum-based drugs. Particularly interesting is the use of statin which represent one of the most commonly administered drugs in aged population to treat hypercholesterolemia. Disulfiram, employed in the treatment of chronic alcoholism, has shown anti-OC properties. Ormeloxifene, commonly used for contraception, seems to be promising, especially due to the negligible side effects. Finally, Quinacrine used as an antimicrobial and anti-inflammatory drug, is able to downregulate OC cell growth and promote cell death.
Conclusion:
Whereas further testing in patients are necessary to better clarify the therapeutic potential of repurposed drugs for OC, it is believed that their use, better if combined with OC targeted delivery systems, can significantly contribute to the development of novel and effective anti-OC treatments.
Insights
Drug repurposing offers a promising strategy for treating ovarian carcinoma (OC) by exploring existing medications. Several drugs, including amiodarone and statins, show potential against OC, warranting further clinical investigation.
Area of Science:
- Oncology
- Pharmacology
- Drug Discovery
Background:
- Ovary carcinoma (OC) is a leading cause of gynecological cancer mortality, often diagnosed late and developing resistance to chemotherapy.
- Novel therapeutic strategies are crucial for improving OC treatment outcomes.
- Drug repurposing, which tests existing drugs for new indications, offers a cost-effective and faster approach to drug development.
Purpose of the Study:
- To explore the potential of repurposed drugs as novel therapeutic agents for ovarian carcinoma.
- To identify specific drugs with demonstrated efficacy against OC in preclinical or early clinical studies.
Main Methods:
- Review and summary of existing literature on drug repurposing for ovarian carcinoma.
- Identification of specific repurposed drugs and their mechanisms of action against OC cells.
Main Results:
- Several repurposed drugs, including amiodarone, Ruxolitinib, statins, disulfiram, ormeloxifene, and Quinacrine, exhibit anti-OC activity.
- Amiodarone shows promise but requires careful toxicity monitoring. Ruxolitinib may enhance platinum-based chemotherapy. Statins, disulfiram, ormeloxifene, and Quinacrine also demonstrate efficacy with varying profiles.
Conclusions:
- Repurposed drugs represent a viable avenue for developing novel and effective ovarian carcinoma treatments.
- Further clinical trials are essential to validate the therapeutic potential of these drugs, particularly when combined with targeted delivery systems.
Related Concept Videos
Treatment Resistant Cancers
Targeted Cancer Therapies
There are several types of targeted therapies against...

