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Updated: Jun 20, 2025

Evaluating In Vitro DNA Damage Using Comet Assay
Published on: October 11, 2017
Onvansertib treatment overcomes olaparib resistance in high-grade ovarian carcinomas
Michela Chiappa1, Alessandra Decio2, Luca Guarrera3
1Laboratory of Preclinical Gynecological Oncology, Experimental Oncology Department, Istituto di Ricerche Farmacologiche Mario Negri IRCCS, Milan, Italy.
Abstract:
Occurrence of resistance to olaparib, a poly(ADP-ribose) polymerase (PARP) inhibitor (PARPi) approved in ovarian carcinoma, has already been shown in clinical settings. Identifying combination treatments to sensitize tumor cells and/or overcome resistance to olaparib is critical. Polo-like kinase 1 (PLK1), a master regulator of mitosis, is also involved in the DNA damage response promoting homologous recombination (HR)-mediated DNA repair and in the recovery from the G2/M checkpoint. We hypothesized that PLK1 inhibition could sensitize tumor cells to PARP inhibition. Onvansertib, a highly selective PLK1 inhibitor, and olaparib were tested in vitro and in vivo in BRCA1 mutated and wild-type (wt) ovarian cancer models, including patient-derived xenografts (PDXs) resistant to olaparib. The combination of onvansertib and olaparib was additive or synergic in different ovarian cancer cell lines, causing a G2/M block of the cell cycle, DNA damage, and apoptosis, much more pronounced in cells treated with the two drugs as compared to controls and single agents treated cells. The combined treatment was well tolerated in vivo and resulted in tumor growth inhibition and a statistically increased survival in olaparib-resistant-BRCA1 mutated models. The combination was also active, although to a lesser extent, in BRCA1 wt PDXs. Pharmacodynamic analyses showed an increase in mitotic, apoptotic, and DNA damage markers in tumor samples derived from mice treated with the combination versus vehicle. We could demonstrate that in vitro onvansertib inhibited both HR and non-homologous end-joining repair pathways and in vivo induced a decrease in the number of RAD51 foci-positive tumor cells, supporting its ability to induce HR deficiency and favoring the activity of olaparib. Considering that the combination was well tolerated, these data support and foster the clinical evaluation of onvansertib with PARPis in ovarian cancer, particularly in the PARPis-resistant setting.
Insights
Combining onvansertib, a polo-like kinase 1 (PLK1) inhibitor, with olaparib, a poly(ADP-ribose) polymerase inhibitor (PARPi), shows promise in overcoming olaparib resistance in ovarian cancer. This combination effectively inhibits tumor growth and increases survival in preclinical models.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Resistance to poly(ADP-ribose) polymerase inhibitors (PARPi) like olaparib is a clinical challenge in ovarian cancer.
- Polo-like kinase 1 (PLK1) plays a role in DNA damage repair and cell cycle regulation, making it a potential therapeutic target.
Purpose of the Study:
- To investigate the efficacy of combining onvansertib (PLK1 inhibitor) with olaparib in ovarian cancer models, including those resistant to olaparib.
- To determine if PLK1 inhibition can sensitize tumor cells to PARP inhibition.
Main Methods:
- In vitro and in vivo testing of onvansertib and olaparib combination in BRCA1-mutated and wild-type ovarian cancer models, including patient-derived xenografts (PDXs).
- Assessment of cell cycle progression, DNA damage, apoptosis, tumor growth, survival, and pharmacodynamic markers.
Main Results:
- The combination demonstrated additive or synergistic effects, inducing G2/M cell cycle arrest, DNA damage, and apoptosis.
- In vivo, the combination was well-tolerated, inhibited tumor growth, and increased survival, particularly in olaparib-resistant models.
- Onvansertib inhibited DNA repair pathways (HR and NHEJ) and reduced RAD51 foci, enhancing olaparib's activity.
Conclusions:
- Combination of onvansertib and olaparib is effective in preclinical ovarian cancer models, including resistant settings.
- The combination warrants further clinical investigation for ovarian cancer treatment, especially in patients resistant to PARPi.
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