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Updated: Apr 21, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Prostate cancer characteristics associated with response to pre-receptor targeting of the androgen axis
Elahe A Mostaghel1, Andrew Morgan2, Xiaotun Zhang3
1Division of Clinical Research, Fred Hutchinson Cancer Research Center, Seattle, Washington, United States of America; Department of Medicine, University of Washington School of Medicine, Seattle, Washington, United States of America.
Background:
Factors influencing differential responses of prostate tumors to androgen receptor (AR) axis-directed therapeutics are poorly understood, and predictors of treatment efficacy are needed. We hypothesized that the efficacy of inhibiting DHT ligand synthesis would associate with intra-tumoral androgen ratios indicative of relative dependence on DHT-mediated growth.
Methods:
We characterized two androgen-sensitive prostate cancer xenograft models after androgen suppression by castration in combination with the SRD5A inhibitor, dutasteride, as well as a panel of castration resistant metastases obtained via rapid autopsy.
Results:
In LuCaP35 tumors (intra-tumoral T:DHT ratio 2:1) dutasteride suppressed DHT to 0.02 ng/gm and prolonged survival vs. castration alone (337 vs.152 days, HR 2.8, p = 0.0015). In LuCaP96 tumors (T:DHT 10:1), survival was not improved despite similar DHT reduction (0.02 ng/gm). LuCaP35 demonstrated higher expression of steroid biosynthetic enzymes maintaining DHT levels (5-fold higher SRD5A1, 41 fold higher, 99-fold higher RL-HSD, p<0.0001 for both), reconstitution of intra-tumoral DHT (to ∼30% of untreated tumors), and ∼2 fold increased expression of full length AR. In contrast, LuCaP96 demonstrated higher levels of steroid catabolizing enzymes (6.9-fold higher AKR1C2, 3000-fold higher UGT2B15, p = 0.002 and p<0.0001 respectively), persistent suppression of intra-tumoral DHT, and 6-8 fold induction of full length AR and the ligand independent V7 AR splice variant. Human metastases demonstrated bio-active androgen levels and AR full length and AR splice-variant expression consistent with the range observed in xenografts.
Conclusions:
Intrinsic differences in basal steroidogenesis, as well as variable expression of full length and splice-variant AR, associate with response and resistance to pre-receptor AR ligand suppression. Expression of steroidogenic enzymes and AR isoforms may serve as potential biomarkers of sensitivity to potent AR-axis inhibition and should be validated in additional models.
Insights
Prostate cancer tumors respond differently to androgen receptor (AR) therapies based on their intrinsic androgen metabolism. Steroidogenic enzyme and AR variant expression may predict treatment efficacy for AR-axis targeted therapies.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Understanding differential prostate cancer responses to androgen receptor (AR) axis-directed therapeutics is crucial.
- Predictors of treatment efficacy are needed for these therapies.
- This study investigates the association between intra-tumoral androgen ratios and the efficacy of inhibiting dihydrotestosterone (DHT) synthesis.
Purpose of the Study:
- To determine if intra-tumoral androgen ratios predict response to DHT synthesis inhibition.
- To characterize the molecular mechanisms underlying differential responses to AR-axis targeted therapies.
Main Methods:
- Two androgen-sensitive prostate cancer xenograft models were studied.
- Models were treated with castration and the SRD5A inhibitor, dutasteride.
- Castration-resistant metastases were analyzed post-mortem.
Main Results:
- Dutasteride prolonged survival in LuCaP35 tumors (T:DHT ratio 2:1) by suppressing DHT.
- Survival was not improved in LuCaP96 tumors (T:DHT 10:1) despite similar DHT suppression.
- LuCaP35 showed higher DHT-synthesizing enzyme expression and AR levels, while LuCaP96 had higher catabolizing enzymes and AR splice variants.
Conclusions:
- Intrinsic differences in steroidogenesis and AR isoform expression influence response to AR-axis targeted therapies.
- Expression of steroidogenic enzymes and AR variants may serve as biomarkers for treatment sensitivity.
- Further validation in additional models is warranted.
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