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Updated: May 9, 2026

Visualizing DNA Damage Repair Proteins in Patient-Derived Ovarian Cancer Organoids via Immunofluorescence Assays
Published on: February 24, 2023
Network analysis identifies an HSP90-central hub susceptible in ovarian cancer
Hanqing Liu1, Fang Xiao, Ilya G Serebriiskii
1Authors' Affiliations: Developmental Therapeutics Program, Biostatistics Facility, Department of Medical Oncology, Fox Chase Cancer Center, Philadelphia, Pennsylvania; and Synta Pharmaceuticals Corp., Lexington, Massachusetts.
Purpose:
Epithelial ovarian cancer (EOC) is usually detected at an advanced stage and is frequently lethal. Although many patients respond to initial surgery and standard chemotherapy consisting of a platinum-based agent and a taxane, most experience recurrence and eventually treatment-resistant disease. Although there have been numerous efforts to apply protein-targeted agents in EOC, these studies have so far documented little efficacy. Our goal was to identify broadly susceptible signaling proteins or pathways in EOC.
Experimental Design:
As a new approach, we conducted data-mining meta-analyses integrating results from multiple siRNA screens to identify gene targets that showed significant inhibition of cell growth. On the basis of this meta-analysis, we established that many genes with such activity were clients of the protein chaperone HSP90. We therefore assessed ganetespib, a clinically promising second-generation small-molecule HSP90 inhibitor, for activity against EOC, both as a single agent and in combination with cytotoxic and targeted therapeutic agents.
Results:
Ganetespib significantly reduced cell growth, induced cell-cycle arrest and apoptosis in vitro, inhibited growth of orthotopic xenografts and spontaneous ovarian tumors in transgenic mice in vivo, and inhibited expression and activation of numerous proteins linked to EOC progression. Importantly, paclitaxel significantly potentiated ganetespib activity in cultured cells and tumors. Moreover, combined treatment of cells with ganetespib and siRNAs or small molecules inhibiting genes identified in the meta-analysis in several cases resulted in enhanced activity.
Conclusion:
These results strongly support investigation of ganetespib, a single-targeted agent with effects on numerous proteins and pathways, in augmenting standard EOC therapies.
Insights
This study identifies HSP90 as a target in epithelial ovarian cancer (EOC). The HSP90 inhibitor ganetespib shows promise in combination with chemotherapy to treat EOC.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Epithelial ovarian cancer (EOC) is a lethal disease often diagnosed at advanced stages.
- Standard treatments like chemotherapy frequently lead to recurrence and drug resistance.
- Targeted therapies have shown limited efficacy in EOC to date.
Purpose of the Study:
- To identify broadly susceptible signaling proteins or pathways in epithelial ovarian cancer.
- To evaluate the efficacy of ganetespib, an HSP90 inhibitor, as a single agent and in combination therapy for EOC.
Main Methods:
- Conducted data-mining meta-analyses of siRNA screens to identify growth-inhibiting gene targets.
- Identified heat shock protein 90 (HSP90) clients as key targets.
- Assessed ganetespib activity in vitro and in vivo, alone and combined with other agents.
Main Results:
- Ganetespib demonstrated significant anti-proliferative and pro-apoptotic effects in EOC cells and tumors.
- Paclitaxel significantly enhanced ganetespib's efficacy.
- Combined treatment with ganetespib and other targeted agents showed enhanced activity.
Conclusions:
- Ganetespib is a promising single-targeted agent with broad pathway effects for EOC.
- Results support the investigation of ganetespib to augment standard EOC therapies.
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