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.

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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