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Microarray-based Identification of Individual HERV Loci Expression: Application to Biomarker Discovery in Prostate Cancer
Published on: November 2, 2013
Emerging Molecular Biomarkers in Advanced Prostate Cancer: Translation to the Clinic
Himisha Beltran1, Emmanuel S Antonarakis1, Michael J Morris1
1From Weill Cornell Medicine, New York, NY, The Sidney Kimmel Comprehensive Cancer Center at Johns Hopkins, Baltimore, MD; Memorial Sloan Kettering Cancer Center, Weill Cornell Medicine, New York, NY; The Institute of Cancer Research, London, United Kingdom, The Royal Marsden Hospital, London, United Kingdom.
Abstract:
Recent clinical and preclinical studies focused on understanding the molecular landscape of castration-resistant prostate cancer (CRPC) have provided insights into mechanisms of treatment resistance, disease heterogeneity, and potential therapeutic targets. This work has served as a framework for several ongoing clinical studies focused on bringing novel observations into the clinic in the form of tissue, liquid, and imaging biomarkers. Resistance in CRPC typically is driven through reactivation of androgen receptor (AR) signaling, which can occur through AR-activating point mutations, amplification, splice variants (such as AR-V7), or other bypass mechanisms. Detection of AR aberrations in the circulation negatively impacts response to subsequent AR-directed therapies such as abiraterone and enzalutamide. Other potentially clinically relevant alterations in CRPC include defects in DNA damage repair (at either the somatic or germline level) in up to 20% of patients (with implications for PARP1 inhibitor therapy), PI3K/PTEN/Akt pathway activation, WNT signaling pathway alterations, cell cycle gene alterations, and less common but potentially targetable alterations involving RAF and FGFR2. Imaging biomarkers that include those focused on incorporating overexpressed androgen-regulated genes/proteins, such as prostate-specific membrane antigen (PSMA) and dihydrotestosterone (DHT) in combination with CT, can noninvasively identify patterns of AR-driven distribution of CRPC tumor cells, monitor early metastatic lesions, and potentially capture heterogeneity of response to AR-directed therapies and other therapeutics. This article focuses on the current state of clinical biomarker development and future directions for how they might be implemented into the clinic in the near term to improve risk stratification and treatment selection for patients.
Insights
Biomarkers are crucial for understanding castration-resistant prostate cancer (CRPC) and guiding treatment. Novel tissue, liquid, and imaging biomarkers offer new strategies for risk stratification and personalized therapy selection in CRPC patients.
Area of Science:
- Oncology
- Molecular Biology
- Translational Medicine
Background:
- Castration-resistant prostate cancer (CRPC) presents significant challenges due to treatment resistance and disease heterogeneity.
- Understanding the molecular underpinnings of CRPC is key to developing effective therapeutic strategies.
- Androgen receptor (AR) signaling reactivation is a primary driver of resistance in CRPC.
Purpose of the Study:
- To review the current state of clinical biomarker development for CRPC.
- To explore novel tissue, liquid, and imaging biomarkers for CRPC.
- To discuss the future implementation of biomarkers for improved patient management.
Main Methods:
- Review of recent clinical and preclinical studies on CRPC molecular landscape.
- Analysis of AR signaling pathways, DNA damage repair defects, and other genetic alterations.
- Evaluation of imaging biomarkers like PSMA and DHT in conjunction with CT scans.
Main Results:
- AR aberrations in circulation predict poor response to AR-directed therapies (abiraterone, enzalutamide).
- Defects in DNA damage repair (20% of patients) suggest PARP1 inhibitor utility.
- Imaging biomarkers can noninvasively identify AR-driven tumor distribution and monitor treatment response.
Conclusions:
- Biomarkers are essential for risk stratification and treatment selection in CRPC.
- Novel biomarkers, including circulating AR variants and imaging agents, show promise for clinical application.
- Further research and integration of these biomarkers can personalize CRPC therapy and improve patient outcomes.

