Growth Inhibition by Testosterone in an Androgen Receptor Splice Variant-Driven Prostate Cancer Model

Daisuke Nakata1, Kazuhide Nakayama2, Tsuneo Masaki2

  • 1Pharmaceutical Research Division, Takeda Pharmaceutical Company Limited, Fujisawa, Kanagawa, Japan. daisuke.nakata@takeda.com.

The Prostate
|July 31, 2016
PubMed
Abstract

Insights

This study introduces JDCaP-hr, a novel castration-resistant prostate cancer model. Testosterone therapy shows promise for treating advanced prostate cancer driven by androgen receptor (AR) splice variants.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Castration resistance is a major challenge in prostate cancer treatment.
  • Androgen receptor (AR) splice variants drive resistance to androgen deprivation therapy and AR-axis inhibitors.
  • A novel hormone-refractory castration-resistant prostate cancer (CRPC) model, JDCaP-hr, was developed.

Purpose of the Study:

  • To characterize the novel JDCaP-hr CRPC model.
  • To investigate the role of AR and its splice variants in castration resistance.
  • To evaluate the therapeutic potential of testosterone in this model.

Main Methods:

  • Established JDCaP-hr from an androgen-dependent xenograft model after castration.
  • Evaluated AR and AR splice variant expression using immunoblotting and qRT-PCR.
  • Assessed effects of AR antagonists and testosterone in vivo and in vitro.
  • Utilized RNA interference to study AR-FL and AR-V7 roles in cell growth.

Main Results:

  • JDCaP-hr developed a C-terminally truncated AR protein and 10-fold upregulation of AR-FL and AR-V7 mRNA.
  • Bicalutamide did not inhibit JDCaP-hr xenograft growth; testosterone induced tumor regression.
  • Androgen-independent growth and PSA secretion were mediated by AR-V7.
  • Physiological testosterone concentrations suppressed JDCaP-hr growth by downregulating AR-FL and AR-V7.

Conclusions:

  • Findings support testosterone therapy, including bipolar androgen therapy, for AR-overexpressed CRPC.
  • This model is valuable for studying CRPC driven by currently non-actionable AR splice variants.