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

Plos One
|May 14, 2013
PubMed

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.

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