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Malformin-A1 (MA1) Sensitizes Chemoresistant Ovarian Cancer Cells to Cisplatin-Induced Apoptosis
Nada Abdullah1, Yahya Tamimi1, Sergey Dobretsov2,3
1Department of Biochemistry, College of Medicine & Health Sciences, Sultan Qaboos University, P.O. Box 50, Muscat P.C. 123, Oman.
Abstract:
High-grade epithelial ovarian cancer is a fatal disease in women frequently associated with drug resistance and poor outcomes. We previously demonstrated that a marine-derived compound MalforminA1 (MA1) was cytotoxic for the breast cancer cell line MCF-7. In this study, we aimed to examine the effect of MA1 on human ovarian cancer cells. The potential cytotoxicity of MA1was tested on cisplatin-sensitive (A2780S) and cisplatin-resistant (A2780CP) ovarian cancer cell lines using AlamarBlue assay, Hoechst dye, flow cytometry, Western blot, and RT-qPCR. MA1 had higher cytotoxic activity on A2780S (IC50 = 0.23 µM) and A2780CP (IC50 = 0.34 µM) cell lines when compared to cisplatin (IC50 = 31.4 µM and 76.9 µM, respectively). Flow cytometry analysis confirmed the cytotoxic effect of MA1. The synergistic effect of the two drugs was obvious, since only 13% of A2780S and 7% of A2780CP cells remained alive after 24 h of treatment with both MA1 and cisplatin. Moreover, we examined the expression of bcl2, p53, caspase3/9 genes at RNA and protein levels using RT-qPCR and Western blot, respectively, to figure out the cell death mechanism induced by MA1. A significant down-regulation in bcl2 and p53 genes was observed in treated cells compared to non-treated cells (p < 0.05), suggesting that MA1 may not follow the canonical pathway to induce apoptosis in ovarian cancer cell lines. MalforminA1 showed promising anticancer activity by inducing cytotoxicity in cisplatin-sensitive and cisplatin-resistant cancer cell lines. Interestingly, a synergistic effect was observed when MA1 was combined with cisplatin, leading to it overcoming its resistance to cisplatin.
Insights
MalforminA1 (MA1), a marine compound, effectively kills ovarian cancer cells, including cisplatin-resistant types. Combining MA1 with cisplatin shows a synergistic effect, enhancing treatment efficacy against drug-resistant ovarian cancer.
Area of Science:
- Marine natural products
- Ovarian cancer therapeutics
- Drug resistance mechanisms
Background:
- High-grade epithelial ovarian cancer is a leading cause of cancer death in women.
- Drug resistance, particularly to platinum-based chemotherapy, significantly limits treatment efficacy.
- MalforminA1 (MA1), a marine-derived compound, previously showed cytotoxicity in breast cancer cells.
Purpose of the Study:
- To investigate the anti-cancer effects of MalforminA1 (MA1) on human ovarian cancer cell lines.
- To evaluate MA1's efficacy against both cisplatin-sensitive and cisplatin-resistant ovarian cancer.
- To explore the potential synergistic interaction between MA1 and cisplatin.
Main Methods:
- Cytotoxicity was assessed using AlamarBlue assays on A2780S and A2780CP cell lines.
- Cell death was confirmed via Hoechst dye staining and flow cytometry.
- Gene and protein expression of apoptosis-related markers (bcl2, p53, caspase3/9) were analyzed using RT-qPCR and Western blot.
Main Results:
- MA1 exhibited potent cytotoxicity against both cisplatin-sensitive (IC50 = 0.23 µM) and resistant (IC50 = 0.34 µM) ovarian cancer cells.
- MA1 demonstrated significantly higher potency than cisplatin in both cell lines.
- Combined treatment with MA1 and cisplatin resulted in synergistic cell death, with only 7-13% cell viability observed.
Conclusions:
- MalforminA1 (MA1) displays promising anticancer activity against ovarian cancer, including cisplatin-resistant phenotypes.
- MA1 exhibits a synergistic effect when combined with cisplatin, potentially overcoming drug resistance.
- MA1's mechanism may involve down-regulation of bcl2 and p53, suggesting a non-canonical apoptotic pathway.
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