Synergistic effects of the curcumin analog HO-3867 and olaparib in transforming fallopian tube epithelial cells
- Invest New Drugs. 2025 Aug 4. doi: 10.1007/s10637-025-01571-2.
- 1. Department of Biochemical and Molecular Medical Sciences, College of Science and Engineering, National Dong Hwa University, Hualien, 974301, Taiwan, R.O.C.
- 2. Department of Natural Resources and Environmental Studies, College of Environmental Studies, National Dong Hwa University, Hualien, 974301, Taiwan, R.O.C.
- 3. Department of Biology, College of Arts and Sciences, Appalachian State University, Boone, NC, 28608, USA.
- 4. Department of Biochemical and Molecular Medical Sciences, College of Science and Engineering, National Dong Hwa University, Hualien, 974301, Taiwan, R.O.C.. [email protected].
- 5. Department of Biology, College of Arts and Sciences, Appalachian State University, Boone, NC, 28608, USA. [email protected].
Ovarian Cancer remains one of the most lethal gynecologic malignancies, largely due to high recurrence rates and treatment-related toxicities. Although PARP inhibitors like Olaparib have shown efficacy in BRCA-mutated cancers, their benefit is limited in broader patient populations. TP53 mutations, highly prevalent in ovarian Cancer, promote tumor progression and resistance, making p53 a key therapeutic target. This study evaluated the Anticancer potential of HO-3867, a curcumin analog known to restore mutant p53 function, alone and in combination with Olaparib. We used fallopian tube-derived ovarian Cancer models harboring mutant or null TP53 and analyzed TP53 expression and mutation profiles using TCGA datasets. Molecular docking simulations and cellular thermal shift assays (CETSA) confirmed HO-3867 binding to the p53Y220C mutant core domain. Cytotoxicity was assessed via SRB assays; flow cytometry and Western blotting were used to examine cell cycle progression, Apoptosis, and DNA damage. HO-3867 treatment increased phospho-p53 (Ser15) and p21 expression, induced G1 phase arrest, and suppressed cell viability. Notably, co-treatment with Olaparib synergistically enhanced Apoptosis, as indicated by increased Caspase-3 and PARP1 cleavage and elevated γH2AX levels. These findings suggest that HO-3867 reactivates mutant p53 and potentiates Olaparib efficacy by promoting Apoptosis and amplifying DNA damage, offering a promising therapeutic strategy for TP53-mutant ovarian Cancer.
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Cat. No.Product NameDescriptionTargetResearch Area
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Research Areas: Cancer