Testicular vs adrenal sources of hydroxy-androgens in prostate cancer

Tianzhu Zang1,2, Mary-Ellen Taplin3, Daniel Tamae1,2

  • 1Department of Systems Pharmacology & Translational TherapeuticsPerelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA.

Insights

Neoadjuvant androgen deprivation therapy (NADT) partially suppresses hydroxy-androgens in high-risk prostate cancer. Adrenal-derived androgens like DHEA-sulfate and specific diols remain elevated, indicating incomplete ablation and potential resistance mechanisms.

Area of Science:

  • Endocrinology
  • Oncology
  • Mass Spectrometry

Background:

  • Neoadjuvant androgen deprivation therapy (NADT) is used for early-stage prostate cancer, but long-term outcomes are suboptimal.
  • Incomplete androgen ablation is a potential mechanism limiting NADT efficacy.
  • Hydroxy-androgens, including specific diols, are implicated in prostate cancer progression.

Purpose of the Study:

  • To evaluate serum hydroxy-androgen suppression efficiency under NADT in localized high-risk prostate cancer.
  • To identify the primary sources (testicular vs. adrenal) of circulating hydroxy-androgens.
  • To assess the impact of combined therapy (leuprolide acetate plus abiraterone acetate and prednisone) versus leuprolide acetate alone.

Main Methods:

  • Stable isotope dilution liquid chromatography-mass spectrometry was employed for precise measurement of hydroxy-androgens.
  • Serum samples from patients receiving different NADT regimens were analyzed.
  • Androgen levels were compared between treatment groups to determine origin.

Main Results:

  • NADT significantly reduced serum levels of three key androgen diols (5-adiol, 3α-adiol, 3β-adiol) and their conjugates.
  • Testosterone, DHT, 3α-adiol, and 3β-adiol were primarily of testicular origin.
  • DHEA, epi-androsterone (epi-AST), 5-adiol sulfate, and glucuronide were predominantly of adrenal origin.
  • NADT failed to fully suppress DHEA-sulfate, 5-adiol-sulfate, and epi-AST-sulfate.

Conclusions:

  • NADT effectively suppresses many hydroxy-androgens, but not all adrenal-derived androgens.
  • Incomplete suppression of specific adrenal androgens (DHEA-sulfate, 5-adiol-sulfate, epi-AST-sulfate) may contribute to treatment resistance.
  • Understanding androgen sources is crucial for optimizing prostate cancer therapy.

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