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Updated: Feb 4, 2026

Preparation of Mitochondria from Ovarian Cancer Tissues and Control Ovarian Tissues for Quantitative Proteomics Analysis
Published on: November 18, 2019
Evaluating class III antiarrhythmic agents as novel MYC targeting drugs in ovarian cancer
Anil Belur Nagaraj1, Peronne Joseph2, Olga Kovalenko3
1Case Comprehensive Cancer Center, Cleveland, OH, USA; Laboratory Medicine and Pathology, Mayo Clinic, Rochester, MN, 55904, USA.
Objective:
To evaluate the utility of amiodarone and its derivative dronedarone as novel drug repositioning candidates in EOC and to determine the potential pathways targeted by these drugs.
Methods:
Drug-predict bioinformatics platform was used to assess the utility of amiodarone as a novel drug-repurposing candidate in EOC. EOC cells were treated with amiodarone and dronedarone. Cell death was assessed by Annexin V staining. Cell viability and cell survival were assessed by MTT and clonogenics assays respectively. c-MYC and mTOR/Akt axis were evaluated as potential targets. Effect on autophagy was determined by autophagy flux flow cytometry.
Results:
"DrugPredict" bioinformatics platform ranked Class III antiarrhythmic drug amiodarone within the top 3.9% of potential EOC drug repositioning candidates which was comparable to carboplatin ranking in the top 3.7%. Amiodarone and dronedarone were the only Class III antiarrhythmic drugs that decreased the cellular survival of both cisplatin-sensitive and cisplatin-resistant primary EOC cells. Interestingly, both drugs induced degradation of c-MYC protein and decreased the expression of known transcriptional targets of c-MYC. Furthermore, stable overexpression of non-degradable c-MYC partially rescued the effects of amiodarone and dronedarone induced cell death. Dronedarone induced higher autophagy flux in EOC cells as compared to amiodarone with decreased phospho-AKT and phospho-4EBP1 protein expression, suggesting autophagy induction due to inhibition of AKT/mTOR axis with these drugs. Lastly, both drugs also inhibited the survival of EOC tumor-initiating cells (TICs).
Conclusions:
We provide the first evidence of class III antiarrhythmic agents as novel c-MYC targeting drugs and autophagy inducers in EOC. Since c-MYC is amplified in >40% ovarian tumors, our results provide the basis for repositioning amiodarone and dronedarone as novel c-MYC targeting drugs in EOC with potential extension to other cancers.
Insights
Amiodarone and dronedarone show promise for repositioning as ovarian cancer treatments by targeting c-MYC and inducing autophagy. These antiarrhythmic drugs effectively reduced ovarian cancer cell survival and tumor-initiating cells.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Epithelial ovarian cancer (EOC) remains a significant challenge with limited treatment options.
- Drug repositioning offers a faster and more cost-effective approach to developing new cancer therapies.
Purpose of the Study:
- To investigate amiodarone and dronedarone as potential drug repositioning candidates for EOC.
- To elucidate the molecular pathways targeted by these drugs in EOC cells.
Main Methods:
- Utilized the Drug-Predict bioinformatics platform for initial candidate screening.
- Treated EOC cells with amiodarone and dronedarone, assessing cell death, viability, and survival.
- Investigated c-MYC, mTOR/Akt axis, and autophagy flux as potential mechanisms of action.
Main Results:
- Amiodarone was identified as a top drug repositioning candidate for EOC.
- Both amiodarone and dronedarone reduced survival in cisplatin-sensitive and resistant EOC cells.
- Drugs induced c-MYC degradation and autophagy, while inhibiting the AKT/mTOR pathway.
Conclusions:
- Amiodarone and dronedarone are novel c-MYC targeting drugs and autophagy inducers for EOC.
- These findings support the repositioning of amiodarone and dronedarone for EOC treatment.
- Potential extension to other cancers with c-MYC amplification is suggested.
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