Related Experiment Video
Updated: Jan 17, 2026

Author Spotlight: Unveiling the Role of TMOD3 in Platinum Resistance and Immune Infiltration in Ovarian Cancer
Published on: August 2, 2024
Auranofin Synergizes with Cisplatin in Reducing Tumor Burden of NOTCH-Dependent Ovarian Cancer
Robert J Lake1,2, Parisa Nikeghbal3, Irina V Lagutina4
1Program in Cell and Molecular Oncology, University of New Mexico Comprehensive Cancer Center, University of New Mexico Health Science Center, Albuquerque, New Mexico.
Abstract:
The NOTCH pathway regulates cell proliferation, differentiation, and stem cell maintenance. Thus, aberrant NOTCH activation plays a key role in cancer initiation, progression, and chemoresistance. Mutations and amplification of NOTCH pathway genes have been identified in high-grade serous ovarian cancers and are associated with poor clinical outcomes. Among the four NOTCH receptors, NOTCH3 alterations were strongly correlated with poor overall survival. Previously, we identified auranofin, an oral gold salt therapeutic compound, as a novel NOTCH pathway inhibitor that disrupts the DNA binding of RBPJ, the major downstream transcriptional effector of the NOTCH pathway. In this study, we surveyed the response of eight ovarian cancer cell lines to auranofin and found IC50 values ranging from 1.7 to 12 μmol/L, with NOTCH3-negative SKOV3 cells having the highest IC50 value. In NOTCH-dependent OVCAR3 cells, auranofin synergized with cisplatin to enhance cell death. Importantly, auranofin treatment led to a dose-dependent decrease in RBPJ occupancy at the NOTCH-dependent promoters, HES1 and HES4. Furthermore, knocking down NOTCH3 in OVCAR3 cells significantly decreased sensitivity to auranofin, further supporting the notion that NOTCH3 signaling is a major target of auranofin. Moreover, auranofin increased cisplatin efficacy in an OVCAR3-derived xenograft mouse model. Using eight patient-derived cancer organoid models, we found that auranofin increased cisplatin efficacy in killing cancer organoids generated from clinically platinum-sensitive patients but also restored platinum response in a subset of organoid models developed from platinum-resistant patients. These studies underscore the potential of auranofin to improve platinum-based cancer therapy, particularly in NOTCH3-expressing cancers.
Significance:
NOTCH signaling underlies cancer initiation, progression, and chemoresistance. Our study revealed the potential of auranofin as a NOTCH pathway inhibitor to enhance the efficacy of platinum-based ovarian cancer therapy.
Insights
Auranofin, a NOTCH pathway inhibitor, enhances cisplatin efficacy in ovarian cancer treatment. This gold salt compound shows promise for improving platinum-based therapies, especially in NOTCH3-expressing tumors.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Aberrant NOTCH pathway signaling is implicated in ovarian cancer development, progression, and resistance to chemotherapy.
- NOTCH3 alterations are specifically linked to poor survival in high-grade serous ovarian cancers.
Purpose of the Study:
- To investigate auranofin, a known NOTCH pathway inhibitor, as a potential therapeutic agent for ovarian cancer.
- To evaluate the efficacy of auranofin alone and in combination with cisplatin in preclinical ovarian cancer models.
Main Methods:
- Screening of eight ovarian cancer cell lines for response to auranofin.
- Assessing drug synergy between auranofin and cisplatin in vitro.
- Analyzing RBPJ occupancy at NOTCH-dependent promoters.
- Evaluating auranofin's effect in an ovarian cancer xenograft mouse model.
- Testing auranofin and cisplatin in patient-derived ovarian cancer organoid models.
Main Results:
- Auranofin demonstrated varying IC50 values across cell lines, with higher resistance in NOTCH3-negative cells.
- Auranofin synergized with cisplatin to induce cell death in NOTCH-dependent cells.
- Auranofin reduced RBPJ binding to target gene promoters (HES1, HES4).
- Knocking down NOTCH3 reduced sensitivity to auranofin.
- Auranofin enhanced cisplatin efficacy in both xenograft and organoid models, including restoring platinum response in some resistant cases.
Conclusions:
- Auranofin effectively inhibits the NOTCH pathway by disrupting RBPJ binding.
- Auranofin shows significant potential to enhance the efficacy of platinum-based chemotherapy in ovarian cancer.
- Auranofin may be particularly beneficial for NOTCH3-expressing ovarian cancers and could overcome platinum resistance.
Related Concept Videos
Chemotherapy-Induced Nausea and Vomiting: 5-HT3 Receptor Antagonists
Treatment Resistant Cancers
Combined Effects of Drugs: Synergism
Such synergistic combinations...
Targeted Cancer Therapies
There are several types of targeted therapies against...

