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PTC-209 Anti-Cancer Effects Involved the Inhibition of STAT3 Phosphorylation
Shahrazad Sulaiman1, Kholoud Arafat1, Rabah Iratni2
1Department of Pharmacology and Therapeutics, College of Medicine and Health Sciences, United Arab Emirates University, Al-Ain, United Arab Emirates.
Abstract:
Introduction: Lung, breast, and colorectal cancers are the leading causes of cancer-related deaths despite many therapeutic options, including targeted therapy and immunotherapies. Methods: Here, we investigated the impact of PTC-209, a small-molecule Bmi-1 inhibitor, on human cancer cell viability alone and in combination with anticancer drugs, namely, cisplatin, oxaliplatin, 5-fluorouracil, camptothecin, and Frondoside-A and its impact on cellular migration and colony growth in vitro and on tumor growth in ovo. Results: We demonstrate that PTC-209 causes a concentration- and time-dependent decrease in the cellular viability of lung cancer cells (LNM35 and A549), breast cancer cells (MDA-MB-231 and T47D), and colon cancer cells (HT-29, HCT8/S11, and HCT-116). Similarly, treatment with PTC-209 significantly decreased the growth of LNM35, A549, MDA-MB-231, and HT-29 clones and colonies in vitro and LNM35 and A549 tumor growth in the in ovo tumor xenograft model. PTC-209 at the non-toxic concentrations significantly reduced the migration of lung (LNM35 and A549) and breast (MDA-MB-231) cancer cells. Moreover, we show that PTC-209, at a concentration of 1 μM, enhances the anti-cancer effects of Frondoside-A in lung, breast, and colon cancer cells, as well as the effect camptothecin in breast cancer cells and the effect of cisplatin in lung cancer cells in vitro. However, PTC-209 failed to enhance the anti-cancer effects of oxaliplatin and 5-fluorouracil in colon cancer cells. Treatment of lung, breast, and colon cancer cells with PTC-209 (1 and 2.5 μM) for 48 h showed no caspase-3 activation, but a decrease in the cell number below the seeding level suggests that PTC-209 reduces cellular viability probably through inhibition of cell proliferation and induction of cell death via a caspase-3-independent mechanism. Molecular mechanism analysis revealed that PTC-209 significantly inhibited the STAT3 phosphorylation by decreasing the expression level of gp130 as early as 30 min post-treatment. Conclusion: Our findings identify PTC-209 as a promising anticancer agent for the treatment of solid tumors either alone and/or in combination with the standard cytotoxic drugs cisplatin and camptothecin and the natural product Frondoside-A.
Insights
PTC-209, a Bmi-1 inhibitor, effectively reduced lung, breast, and colon cancer cell viability, migration, and tumor growth. It also enhanced the efficacy of certain chemotherapy drugs, suggesting its potential as an anticancer agent.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Lung, breast, and colorectal cancers remain leading causes of cancer mortality.
- Existing therapies like targeted therapy and immunotherapy have limitations.
- Novel therapeutic strategies are crucial for improving patient outcomes.
Purpose of the Study:
- To evaluate the anticancer effects of PTC-209, a Bmi-1 inhibitor.
- To assess PTC-209's impact on cancer cell viability, migration, and growth.
- To investigate PTC-209's synergistic effects with conventional chemotherapeutic agents.
Main Methods:
- PTC-209's effects on human lung, breast, and colon cancer cell lines were assessed.
- Cell viability, migration, and colony formation assays were performed in vitro.
- Tumor growth was evaluated in an in ovo tumor xenograft model.
- Combination treatments with cisplatin, oxaliplatin, 5-fluorouracil, camptothecin, and Frondoside-A were investigated.
Main Results:
- PTC-209 demonstrated a dose- and time-dependent reduction in cancer cell viability.
- PTC-209 significantly inhibited cancer cell migration and colony growth in vitro.
- PTC-209 suppressed tumor growth in the in ovo xenograft model.
- PTC-209 enhanced the anti-cancer effects of Frondoside-A, camptothecin, and cisplatin in specific cancer types.
- PTC-209 inhibited STAT3 phosphorylation by downregulating gp130 expression, indicating a caspase-3-independent mechanism.
Conclusions:
- PTC-209 exhibits significant anticancer activity against lung, breast, and colon cancers.
- PTC-209 demonstrates potential as a standalone therapy or in combination with existing treatments.
- The combination of PTC-209 with cisplatin, camptothecin, or Frondoside-A shows promise for solid tumor treatment.
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