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A new niclosamide derivatives-B17 can inhibit urological cancers growth through apoptosis-related pathway
Chia-Lun Wu1,2, Chun-Liang Chen1,3, Hsu-Shan Huang1,3
1Graduate Institute of Life Science, National Defense Medical Center, Taipei, Taiwan.
Abstract:
The incidence and mortality rate of urological cancers is increasing yearly. Niclosamide has been repurposed as an anti-cancer drug in recent years. Synthesized derivative of niclosamide was testified for its anti-cancer activity in urological cancers. MTT assay was used to measure the cytotoxicity effect of niclosamide and its derivatives in urological cancer cell lines. Migratory ability was monitored by scratch migration assay. Apoptosis and cell cycle changes were analyzed by annexin V and PI staining. The apoptosis-related signal proteins were evaluated by western blotting. T24 had the best drug sensitivity with the lowest IC50 in niclosamide and B17 treatment than DU145 and Caki-1 cells. After niclosamide and B17 treatment, the mitotic cells were decreased, but apoptotic bodies and morphology changes were not prominent in T24, Caki-1, and DU145 cells. The migratory ability was inhibited in niclosamide treatment than control group on Caki-1 cells and niclosamide and B17 treatment than control group on DU145 cells. Early apoptosis cells were increased after niclosamide and B17 treatment than control group without cell cycle changes in T24, Caki-1, and DU145 cells. Programmed cell death was activated majorly through PAPR and bcl-2 in T24 and caspase-3 in Caki-1 cells, respectively. Niclosamide and B17 derivative had good ability in inhibition proliferation and migratory ability in T24, Caki-1, and DU145 cells without prominent morphology and apoptotic body changes. UCC cells are more sensitive to niclosamide and B17 treatment. Early apoptosis was induced after niclosamide and B17 treatment through different mechanisms in T24, Caki-1, and DU145 cells.
Insights
Niclosamide and its derivative B17 show anti-cancer effects on urological cancers by inhibiting proliferation and migration. These compounds induce early apoptosis through various mechanisms, with T24 cells exhibiting the highest sensitivity.
Area of Science:
- Oncology
- Pharmacology
Background:
- Urological cancers (UCCs) have rising incidence and mortality rates.
- Niclosamide, an antihelminthic drug, is being repurposed for cancer therapy.
- A synthesized niclosamide derivative (B17) was investigated for anti-cancer activity in UCCs.
Purpose of the Study:
- To evaluate the anti-cancer efficacy of niclosamide and its derivative B17 against human urological cancer cell lines.
- To investigate the effects of these compounds on cancer cell proliferation, migration, apoptosis, and cell cycle.
- To elucidate the molecular mechanisms underlying the anti-cancer activity.
Main Methods:
- Cytotoxicity was assessed using MTT assays.
- Cell migration was evaluated via scratch migration assays.
- Apoptosis and cell cycle distribution were analyzed using Annexin V and PI staining.
- Apoptosis-related protein expression was determined by Western blotting.
Main Results:
- T24 cells demonstrated the highest sensitivity to niclosamide and B17, with the lowest IC50 values.
- Niclosamide and B17 treatments reduced mitotic cells and inhibited migration in Caki-1 and DU145 cells.
- Early apoptosis was induced in T24, Caki-1, and DU145 cells without significant cell cycle changes.
- Programmed cell death pathways involving PARP, Bcl-2, and Caspase-3 were activated.
Conclusions:
- Niclosamide and its derivative B17 effectively inhibit proliferation and migration in urological cancer cells.
- These compounds induce early apoptosis via distinct molecular mechanisms in different UCC cell lines.
- Urological cancer cells show increased sensitivity to niclosamide and B17, suggesting therapeutic potential.
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