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Published on: June 18, 2015
Anti‑proliferative effect of cardamonin on mTOR inhibitor‑resistant cancer cells
Peiguang Niu1, Jinsui Li1, Huajiao Chen1
1Department of Pharmacy, Fujian Provincial Maternity and Children's Hospital, Affiliated Hospital of Fujian Medical University, Fuzhou, Fujian 350001, P.R. China.
Abstract:
A number of mammalian target of rapamycin (mTOR) inhibitors have been approved for the treatment of certain types of cancer or are currently undergoing clinical trials. However, mTOR targeted therapy exerts selective pressure on tumour cells, which leads to the preferential growth of resistant subpopulations. There are two classes of mTOR inhibitors: i) The rapalogs, such as rapamycin, which bind to the 12‑kDa FK506‑binding protein/rapamycin‑binding domain of mTOR; and ii) the ATP‑competitive inhibitors, such as AZD8055, which block the mTOR kinase domain. Cardamonin inhibits mTOR by decreasing the expression of regulatory‑associated protein of mTOR (Raptor), a mechanism of action which differs from the currently available mTOR inhibitors. The present study investigated the inhibitory effects of cardamonin on mTOR inhibitor‑resistant cancer cells. HeLa cervical cancer cells and MCF‑7 breast cancer cells were exposed to high concentrations of mTOR inhibitors, until resistant clones emerged. Cytotoxicity was measured using the MTT and colony forming assays. The inhibitory effect of cardamonin on mTOR signalling was assessed by western blotting. The resistant cells were less sensitive to mTOR inhibitors compared with the parental cells. Consistent with the anti‑proliferation effect, rapamycin and AZD8055 had no effect on the phosphorylation of rapamycin‑sensitive sites on ribosomal protein S6 kinase B1 (S6K1) and AZD8055‑sensitive sites on protein kinase B and eukaryotic translation initiation factor 4E binding protein 1 (Thr 37/46), respectively, in rapamycin‑ and AZD8055‑resistant cells. Cardamonin inhibited cell proliferation and decreased the phosphorylation of mTOR and S6K1, as well as the protein level of raptor, in the mTOR inhibitor‑resistant cells. Therefore, cardamonin may serve as a therapeutic agent for patients with cervical and breast cancer resistant to mTOR inhibitors.
Insights
Cardamonin effectively inhibits the growth of cancer cells resistant to mammalian target of rapamycin (mTOR) inhibitors. This natural compound may offer a new treatment option for patients with resistant cervical and breast cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Mammalian target of rapamycin (mTOR) inhibitors are used in cancer therapy but can lead to drug resistance.
- Rapalogs and ATP-competitive inhibitors are two main classes of mTOR inhibitors.
- Cardamonin exhibits a distinct mechanism of action by reducing regulatory-associated protein of mTOR (Raptor) expression.
Purpose of the Study:
- To investigate the efficacy of cardamonin against cancer cells that have developed resistance to existing mTOR inhibitors.
- To explore cardamonin's effects on mTOR signaling pathways in resistant cancer cells.
Main Methods:
- Development of mTOR inhibitor-resistant cancer cell lines (HeLa and MCF-7).
- Assessment of cell viability and proliferation using MTT and colony formation assays.
- Western blotting to analyze mTOR signaling pathway components, including phosphorylated mTOR, S6K1, and Raptor levels.
Main Results:
- Resistant cancer cells showed reduced sensitivity to conventional mTOR inhibitors (rapamycin, AZD8055).
- Cardamonin demonstrated significant anti-proliferative effects on resistant cells.
- Cardamonin treatment decreased mTOR phosphorylation, S6K1 phosphorylation, and Raptor protein levels in resistant cells.
Conclusions:
- Cardamonin effectively inhibits proliferation in mTOR inhibitor-resistant cancer cells.
- Cardamonin targets the mTOR pathway through a mechanism distinct from current inhibitors.
- Cardamonin shows potential as a therapeutic agent for treating cervical and breast cancers resistant to mTOR inhibitors.
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