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Updated: Oct 11, 2025

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Combination therapy with novel androgen receptor antagonists and statin for castration-resistant prostate cancer
Hiroshi Nakayama1, Yoshitaka Sekine1, Daisuke Oka1
1Department of Urology, Gunma University Graduate School of Medicine, Maebashi, Gunma, Japan.
Background:
One of the growth mechanisms of castration-resistant prostate cancer (CRPC) is de novo androgen synthesis from intracellular cholesterol, and statins may be able to inhibit this mechanism. In addition, statins have been reported to suppress the expression of androgen receptors (ARs) in prostate cancer cell lines. In this study, we investigated a combination therapy of novel AR antagonists and statin, simvastatin, for CRPC.
Methods:
LNCaP, 22Rv1, and PC-3 human prostate cancer cell lines were used. We developed androgen-independent LNCaP cells (LNCaP-LA). Microarray analysis was performed, followed by pathway analysis, and mRNA and protein expression was evaluated by quantitative real-time polymerase chain reaction and Western blot analysis, respectively. Cell viability was determined by MTS assay and cell counts. All evaluations were performed on cells treated with simvastatin and with or without AR antagonists (enzalutamide, apalutamide, and darolutamide).
Results:
The combination of darolutamide and simvastatin most significantly suppressed proliferation in LNCaP-LA and 22Rv1 cells. In a 22Rv1-derived mouse xenograft model, the combination of darolutamide and simvastatin enhanced the inhibition of cell proliferation. In LNCaP-LA cells, the combination of darolutamide and simvastatin led to reduction in the mRNA expression of the androgen-stimulated genes, KLK2 and PSA; however, this reduction in expression did not occur in 22Rv1 cells. The microarray data and pathway analyses showed that the number of differentially expressed genes in the darolutamide and simvastatin-treated 22Rv1 cells was the highest in the pathway termed "role of cell cycle." Consequently, we focused our efforts on the cell cycle regulator polo-like kinase 1 (PLK1), cyclin-dependent kinase 2 (CDK2), and cell cycle division 25C (CDC25C). In 22Rv1 cells, the combination of darolutamide and simvastatin suppressed the mRNA and protein expression of these three genes. In addition, in PC-3 cells (which lack AR expression), the combination of simvastatin and darolutamide enhanced the suppression of cell proliferation and expression of these genes.
Conclusions:
Simvastatin alters the expression of many genes involved in the cell cycle in CRPC cells. Thus, the combination of novel AR antagonists (darolutamide) and simvastatin can potentially affect CRPC growth through both androgen-dependent and androgen-independent mechanisms.
Insights
This study shows that combining darolutamide and simvastatin effectively inhibits castration-resistant prostate cancer (CRPC) cell growth. This combination therapy targets both androgen-dependent and independent pathways, offering a new strategy for CRPC treatment.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Castration-resistant prostate cancer (CRPC) can grow via de novo androgen synthesis.
- Statins, like simvastatin, may inhibit this growth mechanism.
- Statins may also suppress androgen receptor (AR) expression in prostate cancer cells.
Purpose of the Study:
- To investigate the combination therapy of novel AR antagonists and simvastatin for CRPC.
- To evaluate the efficacy of simvastatin combined with enzalutamide, apalutamide, and darolutamide.
Main Methods:
- Utilized LNCaP, 22Rv1, and PC-3 human prostate cancer cell lines, including androgen-independent LNCaP-LA cells.
- Performed microarray and pathway analyses, quantitative real-time PCR, and Western blot to assess gene and protein expression.
- Evaluated cell viability using MTS assay and cell counts after treatment with simvastatin and AR antagonists.
Main Results:
- The combination of darolutamide and simvastatin significantly suppressed proliferation in LNCaP-LA and 22Rv1 cells, and in a mouse xenograft model.
- In LNCaP-LA cells, this combination reduced mRNA expression of KLK2 and PSA; this effect was not observed in 22Rv1 cells.
- In 22Rv1 cells, darolutamide and simvastatin suppressed cell cycle regulators (PLK1, CDK2, CDC25C) at mRNA and protein levels.
- In PC-3 cells (AR-negative), simvastatin and darolutamide enhanced proliferation suppression and gene expression changes.
Conclusions:
- Simvastatin alters cell cycle gene expression in CRPC cells.
- Combining darolutamide with simvastatin offers a potential strategy to inhibit CRPC growth through both androgen-dependent and independent mechanisms.
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