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Updated: May 11, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Effect of small molecules modulating androgen receptor (SARMs) in human prostate cancer models
Anna Tesei1, Carlo Leonetti, Marzia Di Donato
1Biosciences Laboratory, IRCCS Istituto Scientifico Romagnolo per lo Studio e la Cura dei Tumori-IRST, Meldola, Italy. anna.tesei@irst.emr.it
Abstract:
The management of hormone-refractory prostate cancer represents a major challenge in the therapy of this tumor, and identification of novel androgen receptor antagonists is needed to render treatment more effective. We analyzed the activity of two novel androgen receptor antagonists, (S)-11 and (R)-9, in in vitro and in vivo experimental models of hormone-sensitive or castration-resistant prostate cancer (CRPC). In vitro experiments were performed on LNCaP, LNCaP-AR, LNCaP-Rbic and VCaP human prostate cancer cells. Cytotoxic activity was assessed by SRB and BrdU uptake, AR transactivation by luciferase reporter assay and PSA levels by Real Time RT-PCR and ELISA assays. Cell cycle progression-related markers were evaluated by western blot. In vivo experiments were performed on SCID mice xenografted with cells with different sensitivity to hormonal treatment. In hormone-sensitive LNCaP and LNCaP-AR cells, the latter expressing high androgen receptor levels, (R)-9 and (S)-11 exhibited a higher cytotoxic effect compared to that of the reference compound ((R)-bicalutamide), also in the presence of the synthetic androgen R1881. Furthermore, the cytotoxic effect produced by (R)-9 was higher than that of (S)-11 in the two hormone-resistant LNCaP-AR and VCaP cells. A significant reduction in PSA levels was observed after exposure to both molecules. Moreover, (S)-11 and (R)-9 inhibited DNA synthesis by blocking the androgen-induced increase in cyclin D1 protein levels. In vivo studies on the toxicological profile of (R)-9 did not reveal the presence of adverse events. Furthermore, (R)-9 inhibited tumor growth in various in vivo models, especially LNCaP-Rbic xenografts, representative of recurrent disease. Our in vitro results highlight the antitumor activity of the two novel molecules (R)-9 and (S)-11, making them a potentially attractive option for the treatment of CRPC.
Insights
Two novel androgen receptor antagonists, (R)-9 and (S)-11, show significant promise for treating hormone-refractory prostate cancer. These compounds demonstrated potent cytotoxic effects and inhibited tumor growth in preclinical models, offering a potential new therapeutic avenue for castration-resistant prostate cancer (CRPC).
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Hormone-refractory prostate cancer (HRPC) presents a significant therapeutic challenge.
- Novel androgen receptor (AR) antagonists are crucial for improving treatment efficacy.
- Existing therapies often face resistance, necessitating the development of new agents.
Purpose of the Study:
- To evaluate the efficacy of two novel AR antagonists, (R)-9 and (S)-11, in preclinical models of prostate cancer.
- To compare their activity against hormone-sensitive and castration-resistant prostate cancer (CRPC) cell lines and xenografts.
- To assess their impact on AR signaling, cell proliferation, and in vivo tumor growth.
Main Methods:
- In vitro studies utilized LNCaP, LNCaP-AR, LNCaP-Rbic, and VCaP human prostate cancer cell lines.
- Assays included cytotoxicity (SRB, BrdU uptake), AR transactivation (luciferase), PSA levels (RT-PCR, ELISA), and cell cycle markers (Western blot).
- In vivo experiments involved SCID mice xenografted with prostate cancer cells, assessing tumor growth and toxicological profiles.
Main Results:
- Both (R)-9 and (S)-11 exhibited superior cytotoxic effects compared to (R)-bicalutamide in hormone-sensitive cells.
- (R)-9 demonstrated higher cytotoxicity than (S)-11 in hormone-resistant cell lines.
- Both compounds significantly reduced PSA levels and inhibited DNA synthesis by blocking cyclin D1.
- (R)-9 showed no adverse events in vivo and effectively inhibited tumor growth, particularly in recurrent disease models.
Conclusions:
- Novel AR antagonists (R)-9 and (S)-11 possess significant antitumor activity against various prostate cancer models.
- These compounds effectively target AR signaling and inhibit proliferation in both hormone-sensitive and castration-resistant settings.
- (R)-9 and (S)-11 represent promising candidates for the development of novel therapies for CRPC.

