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Updated: Jun 14, 2026

Implementation of In Vitro Drug Resistance Assays: Maximizing the Potential for Uncovering Clinically Relevant Resistance Mechanisms
Published on: December 9, 2015
Transcriptional profiling identifies an androgen receptor activity-low, stemness program associated with enzalutamide
Joshi J Alumkal1, Duanchen Sun2,3,4, Eric Lu2
1Knight Cancer Institute, Oregon Health & Science University, Portland, OR 97239; jalumkal@med.umich.edu owenwitte@mednet.ucla.edu.
Abstract:
The androgen receptor (AR) antagonist enzalutamide is one of the principal treatments for men with castration-resistant prostate cancer (CRPC). However, not all patients respond, and resistance mechanisms are largely unknown. We hypothesized that genomic and transcriptional features from metastatic CRPC biopsies prior to treatment would be predictive of de novo treatment resistance. To this end, we conducted a phase II trial of enzalutamide treatment (160 mg/d) in 36 men with metastatic CRPC. Thirty-four patients were evaluable for the primary end point of a prostate-specific antigen (PSA)50 response (PSA decline ≥50% at 12 wk vs. baseline). Nine patients were classified as nonresponders (PSA decline <50%), and 25 patients were classified as responders (PSA decline ≥50%). Failure to achieve a PSA50 was associated with shorter progression-free survival, time on treatment, and overall survival, demonstrating PSA50's utility. Targeted DNA-sequencing was performed on 26 of 36 biopsies, and RNA-sequencing was performed on 25 of 36 biopsies that contained sufficient material. Using computational methods, we measured AR transcriptional function and performed gene set enrichment analysis (GSEA) to identify pathways whose activity state correlated with de novo resistance. TP53 gene alterations were more common in nonresponders, although this did not reach statistical significance (P = 0.055). AR gene alterations and AR expression were similar between groups. Importantly, however, transcriptional measurements demonstrated that specific gene sets-including those linked to low AR transcriptional activity and a stemness program-were activated in nonresponders. Our results suggest that patients whose tumors harbor this program should be considered for clinical trials testing rational agents to overcome de novo enzalutamide resistance.
Insights
Enzalutamide resistance in metastatic castration-resistant prostate cancer (CRPC) may be predicted by pre-treatment tumor features. Specific gene sets linked to low androgen receptor (AR) activity and stemness programs were activated in non-responders.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Enzalutamide is a key treatment for castration-resistant prostate cancer (CRPC).
- Mechanisms of de novo enzalutamide resistance are not fully understood.
- Predictive biomarkers for treatment response are needed.
Purpose of the Study:
- To identify genomic and transcriptional features in metastatic CRPC biopsies predictive of de novo enzalutamide resistance.
- To evaluate the utility of prostate-specific antigen (PSA)50 response as a clinical endpoint.
Main Methods:
- Phase II trial of enzalutamide in 36 men with metastatic CRPC.
- Targeted DNA and RNA sequencing of pre-treatment biopsies.
- Computational analysis of AR transcriptional function and gene set enrichment analysis (GSEA).
Main Results:
- Prostate-specific antigen (PSA)50 response at 12 weeks predicted progression-free survival, time on treatment, and overall survival.
- No significant difference in TP53 or AR gene alterations between responders and non-responders.
- Transcriptional analysis revealed activation of gene sets associated with low AR activity and stemness in non-responders.
Conclusions:
- Pre-treatment tumor transcriptional profiles, particularly low AR activity and stemness programs, may predict de novo enzalutamide resistance in CRPC.
- These findings suggest potential therapeutic strategies targeting these resistance mechanisms.
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