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Updated: Nov 9, 2025

Assessment of Ovarian Cancer Spheroid Attachment and Invasion of Mesothelial Cells in Real Time
Published on: May 20, 2014
Small Molecule Targeting of Oxysterol-Binding Protein (OSBP)-Related Protein 4 and OSBP Inhibits Ovarian Cancer Cell
Ryan C Bensen1, Gokhan Gunay2, Matthew C Finneran1
1Department of Chemistry and Biochemistry, University of Oklahoma, Norman, Oklahoma 73019, United States.
Abstract:
The development of precision drugs for the selective treatment of ovarian cancer will require targeting proliferative factors selectively expressed in ovarian tumors or targeting unique physiological microenvironments specific for ovarian tumors. Here, we report that oxysterol-binding protein (OSBP)-related protein 4 (ORP4) is a potential druggable precision target in ovarian cancer cells. ORP4 has limited expression in normal tissues and was recently recognized to be a cancer-specific driver of cellular proliferation, including in patient-isolated leukemias. We demonstrate that ORP4 is strongly expressed in a panel of ovarian cancer cell lines. The antiproliferative natural product compound OSW-1 targets ORP4 and OSBP. Our results demonstrate that the OSW-1 compound has high antiproliferative potency in both monolayer and three-dimensional ovarian cancer spheroid models, especially compared to the standard-of-care agents cisplatin and paclitaxel. OSW-1 compound treatment induces a loss of ORP4 expression after 48 h, which is coincident with the cytotoxic effects of OSW-1. The absence of extracellular lipids markedly potentiated the cytotoxicity of OSW-1, which was reversed by addition of extracellular free cholesterol. OSBP, but not ORP4, is reported to transport cholesterol and other lipids between organelles. Our results indicate that the targeting of ORP4 is responsible for the antiproliferative activity of the OSW-1 compound, but that in the absence of exogenously supplied cholesterol, which might be similar to the in vivo ovarian cancer microenvironment, possible OSW-1 targeting of OSBP further potentiates the anticancer activity of the compound. Overall, ORP4 and potentially OSBP are revealed as potential druggable targets for the development of novel treatments for ovarian cancer.
Insights
Oxysterol-binding protein (OSBP)-related protein 4 (ORP4) is a promising target for ovarian cancer precision therapy. The compound OSW-1 effectively inhibits ovarian cancer cell proliferation by targeting ORP4 and potentially OSBP.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Precision medicine for ovarian cancer requires targeting tumor-specific factors or microenvironments.
- Oxysterol-binding protein (OSBP)-related protein 4 (ORP4) is a cancer-specific driver of proliferation with limited normal tissue expression.
- ORP4 is highly expressed in ovarian cancer cell lines.
Purpose of the Study:
- To investigate ORP4 as a druggable target in ovarian cancer.
- To evaluate the antiproliferative effects of the natural product compound OSW-1 on ovarian cancer cells.
- To elucidate the mechanism of action of OSW-1 in ovarian cancer.
Main Methods:
- Expression analysis of ORP4 in ovarian cancer cell lines.
- Treatment of ovarian cancer cells (monolayer and 3D spheroids) with OSW-1.
- Assessment of OSW-1's antiproliferative potency against standard-of-care agents.
- Analysis of ORP4 expression and cellular lipid levels following OSW-1 treatment.
- Investigation of OSW-1's interaction with OSBP and cholesterol.
Main Results:
- OSW-1 demonstrated potent antiproliferative activity against ovarian cancer cells, outperforming cisplatin and paclitaxel.
- OSW-1 treatment led to a decrease in ORP4 expression, correlating with cytotoxic effects.
- Cytotoxicity of OSW-1 was enhanced in lipid-depleted conditions and reversed by exogenous cholesterol.
- Results suggest ORP4 targeting is key, with potential synergistic effects from OSBP targeting in lipid-poor environments.
Conclusions:
- ORP4 is a viable druggable target for ovarian cancer precision therapy.
- The natural compound OSW-1 exhibits significant antiproliferative effects on ovarian cancer.
- OSW-1's mechanism involves ORP4 targeting, with potential for enhanced efficacy through OSBP interaction in specific microenvironments.

