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Updated: Mar 21, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Androgen receptor variant-driven prostate cancer: clinical implications and therapeutic targeting
E S Antonarakis1, A J Armstrong2, S M Dehm3
1Departments of Oncology and Urology, Johns Hopkins Sidney Kimmel Comprehensive Cancer Center, Baltimore, MD, USA.
Abstract:
While there are myriad mechanisms of primary and acquired resistance to conventional and next-generation hormonal therapies in prostate cancer, the potential role of androgen receptor splice variants (AR-Vs) has recently gained momentum. AR-Vs are abnormally truncated isoforms of the androgen receptor (AR) protein that lack the COOH-terminal domain but retain the NH2-terminal domain and DNA-binding domain and are thus constitutively active even in the absence of ligands. Although multiple preclinical studies have previously implicated AR-Vs in the development of castration resistance as well as resistance to abiraterone and enzalutamide, recent technological advances have made it possible to reliably detect and quantify AR-Vs from human clinical tumor specimens including blood samples. Initial clinical studies have now shown that certain AR-Vs, in particular AR-V7, may be associated with resistance to abiraterone and enzalutamide but not taxane chemotherapies when detected in circulating tumor cells. Efforts are now underway to clinically validate AR-V7 as a relevant treatment-selection biomarker in the context of other key genomic aberrations in men with metastatic castration-resistant prostate cancer. Additional efforts are underway to therapeutically target both AR and AR-Vs either directly or indirectly. Whether AR-Vs represent drivers of castration-resistant prostate cancer, or whether they are simply passenger events associated with aggressive disease or clonal heterogeneity, will ultimately be answered only through these types of clinical trials.
Insights
Androgen receptor splice variants (AR-Vs), like AR-V7, may predict resistance to hormonal therapies in prostate cancer. Detecting AR-Vs in circulating tumor cells could guide treatment selection for metastatic castration-resistant prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Prostate cancer often develops resistance to hormonal therapies through various mechanisms.
- Androgen receptor splice variants (AR-Vs) are emerging as key players in treatment resistance.
- AR-Vs are constitutively active androgen receptor (AR) isoforms, driving cancer growth independently of ligand binding.
Purpose of the Study:
- To investigate the clinical significance of AR-Vs in prostate cancer resistance.
- To evaluate AR-V7 as a potential biomarker for predicting response to hormonal therapies.
- To explore therapeutic strategies targeting AR and AR-Vs.
Main Methods:
- Detection and quantification of AR-Vs in clinical tumor specimens, including blood samples.
- Analysis of the association between AR-V expression and response to abiraterone, enzalutamide, and taxane chemotherapies.
- Preclinical studies implicating AR-Vs in castration resistance.
Main Results:
- AR-V7 detection in circulating tumor cells correlates with resistance to abiraterone and enzalutamide.
- AR-V7 presence does not appear to predict resistance to taxane-based chemotherapies.
- Technological advancements enable reliable AR-V detection in clinical samples.
Conclusions:
- AR-V7 shows potential as a predictive biomarker for treatment selection in metastatic castration-resistant prostate cancer.
- Further clinical validation is needed to establish AR-V7's role alongside other genomic aberrations.
- Targeting AR and AR-Vs directly or indirectly represents a promising therapeutic avenue.
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