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A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Differential mechanisms of bicalutamide-induced apoptosis in prostate cell lines
M S Floyd1, M St John Floyd, S J Teahan
1UCD School of Medicine and Medical Science, Mater Misericordiae University Hospital, University College Dublin, Dublin, Ireland. nilbury@oceanfree.net
Abstract:
Bicalutamide is a non-steroidal antiandrogen used in the treatment of prostate cancer. Although widely accepted as an androgen receptor antagonist, the mechanism by which it induces apoptosis remains unclear. Defining exact pathways by which bicalutamide induces its apoptotic effects would help to advance its clinical applications. We aimed to (a) examine the apoptotic effects of bicalutamide at 24 h and (b) comment on the role of the caspases and calpains in mediating bicalutamide-induced apoptosis in androgen-dependent and androgen-independent cells. PWR-1E, PC-3 and DU-145 cells were treated with bicalutamide and assessed for apoptosis by flow cytometry at 24 h. DU-145 cells were used to compare differences between two different metastatic receptor-negative cells and to verify apoptotic induction at 48 h. To delineate a specific pathway of action for bicalutamide, PC-3 and PWR-1E cells were pretreated with specific inhibitors of caspase-dependent (zVAD-FMK) and caspase-independent pathways (calpain 2 inhibitor). Bicalutamide induced apoptosis in androgen-dependent PWR-1E cells via a caspase-dependent and calpain-independent mechanism. In androgen-independent PC-3 cells, bicalutamide also induced apoptosis by mechanisms that were partially inhibited by pan-caspase inhibition but were partially calpain dependent. Understanding into how bicalutamide exerts its effects in androgen-independent cells will yield further insights into the treatment of hormone-refractory disease.
Insights
Bicalutamide triggers cancer cell death (apoptosis) through different pathways in prostate cancer cells. Understanding these mechanisms, involving caspases and calpains, is key for treating hormone-refractory disease.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Bicalutamide is a non-steroidal antiandrogen used for prostate cancer treatment.
- Its precise mechanism of inducing apoptosis, a key cell death pathway, remains unclear.
- Clarifying bicalutamide's apoptotic pathways can enhance its clinical utility.
Purpose of the Study:
- To investigate bicalutamide's apoptotic effects at 24 hours.
- To elucidate the roles of caspases and calpains in bicalutamide-induced apoptosis.
- To compare these mechanisms in androgen-dependent and androgen-independent prostate cancer cells.
Main Methods:
- Prostate cancer cell lines (PWR-1E, PC-3, DU-145) were treated with bicalutamide.
- Apoptosis was assessed using flow cytometry at 24 and 48 hours.
- Specific caspase and calpain inhibitors were used to delineate apoptotic pathways.
Main Results:
- Bicalutamide induced apoptosis in androgen-dependent PWR-1E cells via a caspase-dependent, calpain-independent pathway.
- In androgen-independent PC-3 cells, apoptosis was partially caspase-dependent and partially calpain-dependent.
- DU-145 cells were used to compare metastatic receptor-negative cell apoptosis.
Conclusions:
- Bicalutamide's apoptotic mechanisms differ between androgen-dependent and independent prostate cancer cells.
- Understanding these distinct pathways is crucial for treating hormone-refractory prostate cancer.
- Further research into androgen-independent cell mechanisms may reveal new therapeutic strategies.

