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Published on: April 27, 2018
Androgen receptor mutations for precision medicine in prostate cancer
Masaki Shiota1, Shusuke Akamatsu2, Shigehiro Tsukahara1
1Department of Urology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Abstract:
Hormonal therapies including androgen deprivation therapy and androgen receptor (AR) pathway inhibitors such as abiraterone and enzalutamide have been widely used to treat advanced prostate cancer. However, treatment resistance emerges after hormonal manipulation in most prostate cancers, and it is attributable to a number of mechanisms, including AR amplification and overexpression, AR mutations, the expression of constitutively active AR variants, intra-tumor androgen synthesis, and promiscuous AR activation by other factors. Although various AR mutations have been reported in prostate cancer, specific AR mutations (L702H, W742L/C, H875Y, F877L, and T878A/S) were frequently identified after treatment resistance emerged. Intriguingly, these hot spot mutations were also revealed to change the binding affinity of ligands including steroids and antiandrogens and potentially result in altered responses to AR pathway inhibitors. Currently, precision medicine utilizing genetic and genomic data to choose suitable treatment for the patient is becoming to play an increasingly important role in clinical practice for prostate cancer management. Since clinical data between AR mutations and the efficacy of AR pathway inhibitors are accumulating, monitoring the AR mutation status is a promising approach for providing precision medicine in prostate cancer, which would be implemented through the development of clinically available testing modalities for AR mutations using liquid biopsy. However, there are few reviews on clinical significance of AR hot spot mutations in prostate cancer. Then, this review summarized the clinical landscape of AR mutations and discussed their potential implication for clinical utilization.
Insights
Androgen receptor (AR) mutations are key to prostate cancer treatment resistance. Monitoring these specific AR mutations can guide precision medicine, improving treatment response to AR pathway inhibitors.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Hormonal therapies, including androgen deprivation therapy and androgen receptor (AR) pathway inhibitors, are standard treatments for advanced prostate cancer.
- Treatment resistance frequently develops due to mechanisms like AR amplification, mutations, and altered AR activation.
- Specific AR hot spot mutations (L702H, W742L/C, H875Y, F877L, T878A/S) are associated with resistance and altered drug response.
Purpose of the Study:
- To review the clinical landscape of AR mutations in prostate cancer.
- To discuss the clinical significance and implications of AR hot spot mutations for treatment utilization.
- To highlight the role of AR mutation monitoring in precision medicine for prostate cancer.
Main Methods:
- Literature review summarizing existing clinical data on AR mutations in prostate cancer.
- Analysis of reported AR mutations, focusing on hot spot mutations identified post-treatment resistance.
- Discussion of the impact of these mutations on AR pathway inhibitor efficacy and potential clinical applications.
Main Results:
- Specific AR mutations frequently emerge after hormonal therapy resistance.
- These hot spot mutations can alter the binding affinity of antiandrogens and steroids.
- The identified mutations may lead to altered patient responses to AR pathway inhibitors.
Conclusions:
- AR hot spot mutations are critical in the development of treatment resistance in advanced prostate cancer.
- Monitoring AR mutation status, potentially via liquid biopsy, is a promising strategy for precision medicine.
- Understanding AR mutation profiles can guide the selection of effective AR pathway inhibitors and improve patient outcomes.
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