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A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
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.
Abstract:
Neoadjuvant androgen deprivation therapy (NADT) is one strategy for the treatment of early-stage prostate cancer; however, the long-term outcomes of NADT with radical prostatectomy including biochemical failure-free survival are not promising. One proposed mechanism is incomplete androgen ablation. In this study, we aimed to evaluate the efficiency of serum hydroxy-androgen suppression in patients with localized high-risk prostate cancer under NADT (leuprolide acetate plus abiraterone acetate and prednisone) and interrogate the primary sources of circulating hydroxy-androgens using our recently described stable isotope dilution liquid chromatography mass spectrometric method. For the first time, three androgen diols including 5-androstene-3β,17β-diol (5-adiol), 5α-androstane-3α,17β-diol (3α-adiol), 5α-androstane-3β,17β-diol (3β-adiol), the glucuronide or sulfate conjugate of 5-adiol and 3α-adiol were measured and observed to be dramatically reduced after NADT. By comparing patients that took leuprolide acetate alone vs leuprolide acetate plus abiraterone acetate and prednisone, we were able to distinguish the primary sources of these androgens and their conjugates as being of either testicular or adrenal in origin. We find that testosterone, 5α-dihydrotestosterone (DHT), 3α-adiol and 3β-adiol were predominately of testicular origin. By contrast, dehydroepiandrosterone (DHEA), epi-androsterone (epi-AST) and their conjugates, 5-adiol sulfate and glucuronide were predominately of adrenal origin. Our findings also show that NADT failed to completely suppress DHEA-sulfate levels and that two unappreciated sources of intratumoral androgens that were not suppressed by leuprolide acetate alone were 5-adiol-sulfate and epi-AST-sulfate of adrenal origin.
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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