Cells (Jan 2020)

Androgen Receptor and Its Splicing Variant 7 Expression in Peripheral Blood Mononuclear Cells and in Circulating Tumor Cells in Metastatic Castration-Resistant Prostate Cancer

  • Mercedes Marín-Aguilera,
  • Natalia Jiménez,
  • Òscar Reig,
  • Ruth Montalbo,
  • Ajit K. Verma,
  • Giancarlo Castellano,
  • Lourdes Mengual,
  • Iván Victoria,
  • María V. Pereira,
  • Maria Milà-Guasch,
  • Susana García-Recio,
  • Daniel Benítez-Ribas,
  • Raquel Cabezón,
  • Azucena González,
  • Manel Juan,
  • Aleix Prat,
  • Begoña Mellado

DOI
https://doi.org/10.3390/cells9010203
Journal volume & issue
Vol. 9, no. 1
p. 203

Abstract

Read online

Androgen receptor (AR) signaling remains crucial in castration-resistant prostate cancer (CRPC). Since it is also essential in immune cells, we studied whether the expression of AR full-length (ARFL) and its splicing variant ARV7 in peripheral blood mononuclear cells (PBMC) predicts systemic treatment response in mCRPC in comparison with circulating-tumor cells (CTC). We measured ARFL and ARV7 mRNA in PBMC and CTC from patients prior to receiving abiraterone (AA), enzalutamide (E), or taxanes by a pre-amplification plus quantitative reverse-transcription PCR. They were also tested in LNCaP-ARV7-transfected and in 22RV1 docetaxel-resistant (22RV1DR) cells. We studied 171 PBMC from 136 patients and from 24 non-cancer controls, and 47 CTC from 22 patients. High PBMC ARV7 levels correlated with worse AA/E and better taxane response. In taxane-treated patients high PBMC ARFL also correlated with longer progression-free survival (PFS). High ARV7 and ARFL expression were independently associated with better biochemical-PFS. Conversely, high CTC ARV7 and ARFL correlated with shorter radiological-PFS and overall survival, respectively. High ARV7 in 22RV1DR and LNCaP-ARV7 cells correlated with taxane resistance. In conclusion, ARFL and ARV7 at PBMC or CTC have a different predictive role in the taxane response, suggesting a potential influence of the AR pathway from PBMC in such response modulation.

Keywords