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Updated: Jun 3, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Minireview: Alternative activation pathways for the androgen receptor in prostate cancer
Kristin R Lamont1, Donald J Tindall
1Department of Urology, Mayo Clinic College of Medicine, 200 First Street SW, Rochester, Minnesota 55901, USA.
Abstract:
Advanced prostate tumors, which are androgen dependent, are often initially treated in the clinic with hormone ablation therapy, either through surgical castration or administration of small-molecule antiandrogens. Most tumors respond favorably to these treatments, exhibiting regression of the tumor, amelioration of symptoms, and a decrease of prostate-specific antigen in patient sera. However, with time, the majority of tumors recur in a more aggressive, castration-resistant (CR) phenotype. Currently, no effective treatment exists for this stage of the cancer, and patients ultimately succumb to metastatic disease. The androgen receptor (AR), which is a member of the nuclear hormone receptor superfamily of proteins, is the transcription factor that is responsible for mediating the effects of androgens upon target tissues, and it has been demonstrated to play a central role in the development and progression of prostate cancer. Despite CR tumor cells being able to continue to grow after hormonal therapy in which testosterone and dihydrotestosterone are markedly reduced, they still require the expression and activity of the AR. The AR can become transactivated in this low-androgen environment through a number of different mechanisms, including amplification and mutation of the receptor, cross talk with other signaling pathways, and altered regulation by coregulatory proteins. This review will summarize the most current data regarding non-ligand-mediated activation of the AR in prostate cancer cells. Developing work in this field aims to more clearly elucidate the signals that drive AR activity independently of androgens in CR disease so that better therapeutic targets can be developed for patients with this stage of highly aggressive prostate carcinoma.
Insights
Castration-resistant prostate cancer (CRPC) still relies on the androgen receptor (AR). Understanding non-ligand AR activation in CRPC is key to developing new treatments for aggressive prostate tumors.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Advanced prostate cancer is initially treated with hormone ablation therapy.
- Tumors often develop resistance, progressing to a castration-resistant (CR) phenotype.
- Currently, effective treatments for CR prostate cancer are lacking.
Purpose of the Study:
- To review current data on non-ligand-mediated activation of the androgen receptor (AR) in prostate cancer cells.
- To elucidate signals driving AR activity independently of androgens in CR disease.
- To identify potential therapeutic targets for aggressive prostate carcinoma.
Main Methods:
- Review of current scientific literature on androgen receptor signaling in prostate cancer.
- Analysis of mechanisms of AR transactivation in low-androgen environments.
- Summary of data regarding non-ligand-mediated AR activation.
Main Results:
- CR prostate tumors continue to require AR expression and activity despite low androgen levels.
- AR can be activated through mechanisms like receptor amplification, mutation, pathway crosstalk, and altered coregulatory proteins.
- Non-ligand-mediated AR activation is a critical factor in CR prostate cancer progression.
Conclusions:
- The androgen receptor remains crucial for castration-resistant prostate cancer growth.
- Understanding non-ligand AR activation pathways is essential for developing novel therapies.
- Targeting these pathways may offer new treatment strategies for advanced, aggressive prostate cancer.
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