Clinical and laboratory evidence continues to demonstrate that androgens and the androgen receptor (AR) are the best available targets for treating/preventing both early and advanced prostate cancer. Numerous clinical trials have been designed to interfere with the AR pathway, but few have actually assessed the effectiveness of the therapy by demonstrating maximal target interference. This proposal aims to use a neoadjuvant clinical trial format to rigorously evaluate the effectiveness of maximal androgen suppression through measurements of intraprostatic androgen levels, and to target a maximal suppression of DHT levels to zero. The clinical benefit of this approach will be evaluated through measurements of tumor grade, stage, margin, tumor cell apoptosis and androgen-regulated gene expression.
The aims are:
Aim 1. To determine the anti-tumor efficacy of achieving specific (low) intraprostatic androgen levels and inhibition of AR-signaling through direct assessments of tumor viability, apoptosis, proliferation, and androgen-regulated gene expression.
Aim 2. To evaluate and compare alternative mechanisms capable of maintaining androgen-activity in a 'castrate'environment in both primary and metastatic prostate cancer: (i) utilization of adrenal androgens; (ii) active androgen transport;(iii) cfenovo biosynthesis of androgens by neoplastic prostate epithelium.
Aim 3. To evaluate the pre-clinical efficacy and mechanism(s) of activity of new targeted therapies designed to inhibit testicular, adrenal, and prostatic androgen metabolism and/or AR signaling. The completion of this research project will: 1) demonstrate the efficacy (or lack thereof) of efforts to ablate tissue androgens;2) measure tumor responses to specific androgen levels and AR inhibition;and 3) provide a context for additional approaches designed to target the AR.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Specialized Center (P50)
Project #
5P50CA097186-10
Application #
8330641
Study Section
Special Emphasis Panel (ZCA1)
Project Start
Project End
2013-08-31
Budget Start
2011-09-08
Budget End
2012-08-31
Support Year
10
Fiscal Year
2011
Total Cost
$199,605
Indirect Cost
Name
Fred Hutchinson Cancer Research Center
Department
Type
DUNS #
078200995
City
Seattle
State
WA
Country
United States
Zip Code
98109
Barnard, Monique; Quanson, Jonathan L; Mostaghel, Elahe et al. (2018) 11-Oxygenated androgen precursors are the preferred substrates for aldo-keto reductase 1C3 (AKR1C3): Implications for castration resistant prostate cancer. J Steroid Biochem Mol Biol 183:192-201
Ganaie, Arsheed A; Beigh, Firdous H; Astone, Matteo et al. (2018) BMI1 Drives Metastasis of Prostate Cancer in Caucasian and African-American Men and Is A Potential Therapeutic Target: Hypothesis Tested in Race-specific Models. Clin Cancer Res 24:6421-6432
Schweizer, Michael T; Haugk, Kathleen; McKiernan, Jožefa S et al. (2018) A phase I study of niclosamide in combination with enzalutamide in men with castration-resistant prostate cancer. PLoS One 13:e0198389
Peacock, James W; Takeuchi, Ario; Hayashi, Norihiro et al. (2018) SEMA3C drives cancer growth by transactivating multiple receptor tyrosine kinases via Plexin B1. EMBO Mol Med 10:219-238
Pollan, Sara G; Huang, Fangjin; Sperger, Jamie M et al. (2018) Regulation of inside-out ?1-integrin activation by CDCP1. Oncogene 37:2817-2836
Wu, Yi-Mi; Cie?lik, Marcin; Lonigro, Robert J et al. (2018) Inactivation of CDK12 Delineates a Distinct Immunogenic Class of Advanced Prostate Cancer. Cell 173:1770-1782.e14
Schweizer, Michael T; Hancock, Michael L; Getzenberg, Robert H et al. (2018) Hormone levels following surgical and medical castration: defining optimal androgen suppression. Asian J Androl 20:405-406
Yan, Qingxiang; Bantis, Leonidas E; Stanford, Janet L et al. (2018) Combining multiple biomarkers linearly to maximize the partial area under the ROC curve. Stat Med 37:627-642
Lam, Hung-Ming; Nguyen, Holly M; Corey, Eva (2018) Generation of Prostate Cancer Patient-Derived Xenografts to Investigate Mechanisms of Novel Treatments and Treatment Resistance. Methods Mol Biol 1786:1-27
Lam, Hung-Ming; Corey, Eva (2018) Supraphysiological Testosterone Therapy as Treatment for Castration-Resistant Prostate Cancer. Front Oncol 8:167

Showing the most recent 10 out of 400 publications