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Published on: October 24, 2019
Androgen receptor as a driver of therapeutic resistance in advanced prostate cancer
Barbara Kahn1, Joanne Collazo1, Natasha Kyprianou1
1Departments of Urology and Molecular and Cellular Biochemistry, University of Kentucky, College of Medicine, Lexington, KY 40536, USA.
Abstract:
The role of the androgen receptor (AR) signaling axis in the progression of prostate cancer is a cornerstone to our understanding of the molecular mechanisms causing castration-resistant prostate cancer (CRPC). Resistance of advanced prostate cancer to available treatment options makes it a clinical challenge that results in approximately 30,000 deaths of American men every year. Since the historic discovery by Dr. Huggins more than 70 years ago, androgen deprivation therapy (ADT) has been the principal treatment for advanced prostate cancer. Initially, ADT induces apoptosis of androgen-dependent prostate cancer epithelial cells and regression of androgen-dependent tumors. However, the majority of patients with advanced prostate cancer progress and become refractory to ADT due to emergence of androgen-independent prostate cancer cells driven by aberrant AR activation. Microtubule-targeting agents such as taxanes, docetaxel and paclitaxel, have enjoyed success in the treatment of metastatic prostate cancer; although new, recently designed mitosis-specific agents, such as the polo-kinase and kinesin-inhibitors, have yielded clinically disappointing results. Docetaxel, as a first-line chemotherapy, improves prostate cancer patient survival by months, but tumor resistance to these therapeutic agents inevitably develops. On a molecular level, progression to CRPC is characterized by aberrant AR expression, de novo intraprostatic androgen production, and cross talk with other oncogenic pathways. Emerging evidence suggests that reactivation of epithelial-mesenchymal-transition (EMT) processes may facilitate the development of not only prostate cancer but also prostate cancer metastases. EMT is characterized by gain of mesenchymal characteristics and invasiveness accompanied by loss of cell polarity, with an increasing number of studies focusing on the direct involvement of androgen-AR signaling axis in EMT, tumor progression, and therapeutic resistance. In this article, we discuss the current knowledge of mechanisms via which the AR signaling drives therapeutic resistance in prostate cancer metastatic progression and the novel therapeutic interventions targeting AR in CRPC.
Insights
The androgen receptor (AR) signaling axis drives castration-resistant prostate cancer (CRPC) progression and therapeutic resistance. Understanding AR
Area of Science:
- Oncology
- Molecular Biology
- Urology
Background:
- Castration-resistant prostate cancer (CRPC) poses a significant clinical challenge, leading to numerous deaths annually.
- Androgen deprivation therapy (ADT) is the primary treatment, but prostate cancer often becomes resistant due to aberrant androgen receptor (AR) activation.
- Current treatments like taxanes offer limited survival benefits, and resistance inevitably develops.
Purpose of the Study:
- To review the mechanisms by which the AR signaling axis drives therapeutic resistance in metastatic prostate cancer.
- To discuss novel therapeutic interventions targeting AR in CRPC.
- To explore the role of epithelial-mesenchymal-transition (EMT) in prostate cancer progression and resistance.
Main Methods:
- Review of current scientific literature on AR signaling in prostate cancer.
- Analysis of molecular mechanisms underlying therapeutic resistance.
- Discussion of emerging therapeutic strategies targeting the AR pathway and EMT.
Main Results:
- Aberrant AR expression, intraprostatic androgen production, and pathway crosstalk characterize CRPC progression.
- Reactivation of epithelial-mesenchymal-transition (EMT) processes is implicated in prostate cancer metastasis and therapeutic resistance.
- The androgen-AR signaling axis directly influences EMT, tumor progression, and resistance to therapies.
Conclusions:
- The AR signaling axis is central to prostate cancer progression and resistance to ADT.
- Targeting AR signaling and EMT processes represents a promising strategy for novel CRPC therapies.
- Further research into AR-driven mechanisms is crucial for developing effective treatments for advanced prostate cancer.
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