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Updated: Sep 18, 2025

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Onvansertib-Based Second-Line Therapies in Combination with Gemcitabine and Carboplatin in Patient-Derived
Federica Guffanti1, Ilaria Mengoli1, Francesca Ricci1
1Laboratory of Gynecological Preclinical Oncology, Experimental Oncology Department, Istituto di Ricerche Farmacologiche Mario Negri IRCCS, 20156 Milan, Italy.
Abstract:
Platinum resistance represents an urgent medical need in the management of ovarian cancer. The activity of the combinations of onvansertib, an inhibitor of polo-like kinase 1, with gemcitabine or carboplatin was tested using patient-derived xenografts of high-grade serous ovarian carcinoma resistant to cisplatin (DDP). Two PDX models were selected from our xenobank: one with acquired resistance to DDP (#266R) and the other (#315) with intrinsic DDP resistance. Tumor-bearing mice were randomized to receive vehicle, single onvansertib, gemcitabine and carboplatin, and their combinations. Onvansertib/gemcitabine and onvansertib/carboplatin combinations were well tolerated. In the #266R model, single drug treatments were completely inactive, while the combinations of onvansertib/gemcitabine and onvansertib/carboplatin resulted in a significant increase in survival compared to controls and single drugs (p < 0.001 versus control, onvansertib, gemcitabine and carboplatin). Similar efficacy was observed in the s.c. #315 PDX model; indeed, onvansertib and carboplatin monotherapies were inactive, gemcitabine monotherapy was marginally active, while both combinations were highly active. The molecular mechanism underlying the efficacy of the combinations suggests a higher induction of DNA damage which seems plausible considering that, in both cases, gemcitabine and carboplatin, respectively, interfere with DNA metabolism and induce alkylation damage. The results suggest that the combinations of onvansertib/gemcitabine and onvansertib/carboplatin are safe and were shown to be of therapeutic value in the platinum-resistant setting of ovarian carcinoma, strongly supporting their clinical translatability.
Insights
New research shows that combining onvansertib with gemcitabine or carboplatin effectively treats platinum-resistant ovarian cancer. These combinations significantly improved survival in patient-derived models, offering hope for patients with limited options.
Area of Science:
- Oncology
- Pharmacology
- Cancer Biology
Background:
- Platinum resistance is a major challenge in treating ovarian cancer.
- Developing novel therapeutic strategies is crucial for platinum-resistant ovarian cancer.
Purpose of the Study:
- To evaluate the efficacy of onvansertib, a polo-like kinase 1 inhibitor, in combination with gemcitabine or carboplatin.
- To assess these combinations in patient-derived xenograft (PDX) models of platinum-resistant ovarian cancer.
Main Methods:
- Two PDX models of high-grade serous ovarian carcinoma resistant to cisplatin (DDP) were used: one acquired (#266R) and one intrinsic (#315) resistance.
- Tumor-bearing mice received vehicle, single-agent onvansertib, gemcitabine, carboplatin, or their combinations.
- Efficacy was assessed by survival rates and molecular mechanisms involving DNA damage induction were explored.
Main Results:
- Onvansertib/gemcitabine and onvansertib/carboplatin combinations were well tolerated.
- In the #266R model, combinations significantly increased survival (p < 0.001) compared to controls and single agents.
- In the #315 model, combinations were highly active, whereas single agents showed limited or no activity.
Conclusions:
- Onvansertib in combination with gemcitabine or carboplatin demonstrates therapeutic value in platinum-resistant ovarian cancer.
- These combinations are safe and show potential for clinical translation.
- Enhanced DNA damage induction may underlie the observed efficacy of the combination therapies.
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