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Updated: Jul 8, 2025

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Prostate cancer androgen biosynthesis relies solely on CYP17A1 downstream metabolites
Gido Snaterse1, Angela E Taylor2, J Matthijs Moll3
1Section of Endocrinology, Department of Internal Medicine, Erasmus MC, Rotterdam, the Netherlands.
Abstract:
Prostate cancer (PC) is dependent on androgen receptor (AR) activation by testosterone and 5α-dihydrotestosterone (DHT). Intratumoral androgen accumulation and activation despite systemic androgen deprivation therapy underlies the development of castration-resistant PC (CRPC), but the precise pathways involved remain controversial. Here we investigated the differential contributions of de novo androgen biosynthesis and androgen precursor conversion to androgen accumulation. Steroid flux analysis by liquid chromatography-tandem mass spectrometry (LC-MS/MS) was performed on (CR)PC cell lines and fresh patient PC tissue slices after incubation with classic and alternative biosynthesis intermediates, alongside quantitative PCR analysis for steroidogenic enzyme expression. Activity of CYP17A1 was undetectable in all PC cell lines and patient PC tissue slices. Instead, steroid flux analysis confirmed the generation of testosterone and DHT from adrenal precursors and reactivation of androgen metabolites. Precursor steroids upstream of DHEA were converted down the first steps of the alternative DHT biosynthesis pathway, but did not proceed through to active androgen generation. Comprehensive steroid flux analysis of (CR)PC cells provides strong evidence against intratumoral de novo androgen biosynthesis and demonstrates that androgen precursor steroids downstream of CYP17A1 activities constitute the major source of intracrine androgen generation.
Insights
Prostate cancer relies on androgens. This study shows castration-resistant prostate cancer (CRPC) primarily uses androgen precursors, not de novo synthesis, for growth.
Area of Science:
- Oncology
- Endocrinology
- Biochemistry
Background:
- Prostate cancer (PC) growth is driven by androgen receptor (AR) activation.
- Castration-resistant PC (CRPC) develops due to intratumoral androgen accumulation, but the exact mechanisms are debated.
- Understanding androgen sources is crucial for CRPC treatment strategies.
Purpose of the Study:
- To investigate the roles of de novo androgen biosynthesis versus androgen precursor conversion in CRPC.
- To differentiate the contributions of various androgen synthesis pathways in PC.
Main Methods:
- Steroid flux analysis using liquid chromatography-tandem mass spectrometry (LC-MS/MS).
- Incubation of (CR)PC cell lines and patient tissue slices with androgen biosynthesis intermediates.
- Quantitative PCR (qPCR) for steroidogenic enzyme expression.
Main Results:
- CYP17A1 activity was undetectable in all tested PC samples.
- Testosterone and DHT were generated from adrenal precursors and via reactivation of androgen metabolites.
- Androgen precursors upstream of DHEA initiated the alternative DHT pathway but did not yield active androgens.
Conclusions:
- Intratumoral de novo androgen biosynthesis is not a significant source for CRPC growth.
- Androgen precursor steroids downstream of CYP17A1 activity are the primary source of intracrine androgen generation in CRPC.
- These findings challenge existing models and suggest new therapeutic targets for CRPC.
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