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Published on: December 9, 2015
Androgen receptor genomic alterations and treatment resistance in metastatic prostate cancer
Edmond M Kwan1, Alexander W Wyatt1,2
1Department of Urologic Sciences, Vancouver Prostate Centre, University of British Columbia, Vancouver, British Columbia, Canada.
Background:
Genomic alterations to the androgen receptor (AR) are common in metastatic castration-resistant prostate cancer (mCRPC). AR copy number amplifications, ligand-binding domain missense mutations, and intronic structural rearrangements can all drive resistance to approved AR pathway inhibitors and their detection via tissue or liquid biopsy is linked to clinical outcomes. With an increasingly crowded treatment landscape, there is hope that AR genomic alterations can act as prognostic and/or predictive biomarkers to guide patient management.
Methods:
In this review, we evaluate the current evidence for AR genomic alterations as clinical biomarkers in mCRPC, focusing on correlative studies that have used plasma circulating tumor DNA to characterize AR genotype.
Results:
We highlight data that demonstrates the complexity of AR genotype within individual patients, and suggest that future studies should account for cancer clonal heterogeneity and variable tumor content in liquid biopsy samples. Given the potential for cooccurrence of multiple AR genomic alterations in the same or competing subclones of a patient, it is distinctly challenging to attribute blanket clinical significance to any individual alteration. This challenge is further complicated by the varied treatment exposures in contemporary patients, and the fact that AR genotype continues to evolve in the mCRPC setting across sequential lines of systemic therapy.
Conclusions:
As treatment access and liquid biopsy technology continues to improve, we posit that real-time measures of AR biology are likely to play a key role in emerging precision oncology strategies for metastatic prostate cancer.
Insights
Genomic alterations in the androgen receptor (AR) drive resistance in metastatic castration-resistant prostate cancer (mCRPC). Understanding AR genotype via liquid biopsy may guide future precision oncology treatments.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Androgen receptor (AR) genomic alterations are prevalent in metastatic castration-resistant prostate cancer (mCRPC).
- These alterations, including copy number amplifications, mutations, and rearrangements, contribute to resistance against AR pathway inhibitors.
- Detection of AR genomic alterations through tissue or liquid biopsy correlates with clinical outcomes.
Purpose of the Study:
- To review the evidence for AR genomic alterations as biomarkers in mCRPC.
- To focus on studies utilizing plasma circulating tumor DNA (ctDNA) for AR genotype characterization.
Main Methods:
- Review of correlative studies on AR genomic alterations in mCRPC.
- Analysis of circulating tumor DNA (ctDNA) from plasma samples to assess AR genotype.
- Evaluation of clinical outcomes linked to AR genotype detection.
Main Results:
- AR genotype is complex within individual patients, exhibiting clonal heterogeneity.
- Multiple AR genomic alterations can co-occur within the same or competing subclones.
- AR genotype evolves across sequential lines of systemic therapy in mCRPC patients.
Conclusions:
- Attributing clinical significance to individual AR alterations is challenging due to complexity and co-occurrence.
- Future studies must account for cancer clonal heterogeneity and variable tumor content in liquid biopsies.
- Real-time monitoring of AR biology using liquid biopsy is poised to be crucial for precision oncology in metastatic prostate cancer.
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