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Updated: Oct 27, 2025

Author Spotlight: Advancing Prostate Cancer Research Through Improved Tissue Sampling and Biobanking
Published on: November 17, 2023
AR gene rearrangement analysis in liquid biopsies reveals heterogeneity in lethal prostate cancer
Mark Daniel1,2, Todd P Knutson3, Jamie M Sperger4,5
1Masonic Cancer Center, University of Minnesota, Minneapolis, Minnesota, USA.
Abstract:
Castration-resistant prostate cancer (CRPC) is driven by AR gene aberrations that arise during androgen receptor (AR)-targeted therapy. AR amplification and mutations have been profiled in circulating tumor cells (CTCs), but whether AR gene rearrangements can be assessed in CTCs is unknown. In this study, we leveraged CRPC cell lines with defined AR gene rearrangements to develop and validate a CTC DNA analysis approach that utilized whole genome amplification and targeted DNA-sequencing of AR and other genes important in CRPC. We tested the utility of this approach by analyzing matched CTC DNA and plasma cell-free DNA (cfDNA) from a case series of ten CRPC patients. One of ten CTC samples and two of ten cfDNA samples were positive for AR gene rearrangements. All AR gene rearrangements were discordant between matched liquid biopsy samples. One patient harbored separate AR gene rearrangements in CTC DNA and cfDNA, but concordant AR amplification and AR T878A mutation. This patient also displayed concordant loss of TP53 and PTEN, but the loss of RB1 in cfDNA only. The overall frequency of discordant alterations in these genes between matched CTC DNA and cfDNA was high. This study establishes the technical feasibility of analyzing structural rearrangements, mutations, and copy number variants in AR and other CRPC genes using two different sources of DNA from a single blood sample. Paired CTC DNA and cfDNA analysis may have utility for capturing the heterogeneity of genetic alterations in CRPC patients.
Insights
Analyzing circulating tumor cells (CTCs) and cell-free DNA (cfDNA) in castration-resistant prostate cancer (CRPC) reveals discordant genetic alterations. This paired liquid biopsy approach captures tumor heterogeneity, aiding treatment decisions.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Castration-resistant prostate cancer (CRPC) progression is linked to androgen receptor (AR) gene aberrations.
- While AR amplification and mutations are detectable in circulating tumor cells (CTCs), AR gene rearrangements in CTCs remain unassessed.
Purpose of the Study:
- To develop and validate a method for assessing AR gene rearrangements in CTCs.
- To investigate the concordance of genetic alterations between CTC DNA and plasma cell-free DNA (cfDNA) in CRPC patients.
Main Methods:
- Utilized whole genome amplification and targeted DNA sequencing of AR and CRPC-related genes.
- Analyzed matched CTC DNA and cfDNA from ten CRPC patients.
- Assessed AR gene rearrangements, amplification, mutations, and copy number variants.
Main Results:
- AR gene rearrangements were detected in 1/10 CTC samples and 2/10 cfDNA samples.
- All detected AR gene rearrangements were discordant between matched CTC DNA and cfDNA.
- High discordance rates were observed for other genetic alterations (TP53, PTEN, RB1) between CTC DNA and cfDNA.
Conclusions:
- Establishes the technical feasibility of analyzing structural rearrangements, mutations, and copy number variants in AR and other CRPC genes from both CTCs and cfDNA.
- Paired analysis of CTC DNA and cfDNA shows potential for capturing the genetic heterogeneity in CRPC patients.

