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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
A Novel Drug Candidate that Selectively Targets the Critical Androgen Receptor-ELK1 Growth Axis in Advanced and
Abstract:
Androgen receptor (AR)-dependent prostate cancer (PCa) cells require co-activation of ELK1 by AR to activate a critical set of cell cycle and mitosis genes, regardless of hormone - sensitivity. A small molecule antagonist (KCI807) that inhibits AR-dependent growth by selectively binding to AR and blocking its association with ELK1 is limited as a drug by auto-induced metabolism. Using structure-activity data, consistent with modeling a physically mapped KCI807 binding pocket, we developed a new class of compounds with a different core structure comprising 5-Hydroxy-2-(3-hydroxyphenyl)-1-methylquinolin-4(1H)-one (KCI830), with variable N- substituents. The compound with a N-2,2,2-trifluoroethyl substitution (KCI838) was the fastest acting and most potent inhibitor of AR-dependent cell growth and colony formation in PCa model cells, including exclusively AR splice variant-dependent and other enzalutamide-resistant cells, without affecting growth of AR-negative cell lines. Critical tests were conducted to establish that KCI838 recapitulates the previously elucidated mode of action of KCI807. KCI838 selectively inhibited ELK1-dependent vs. androgen response element (ARE)-driven promoter and gene activation by AR. KCI838 blocked AR binding to ELK1 in situ tested by BRET assay. Increasing the total cellular AR by ∼2-fold using ectopic AR expression caused the predicted change in drug dose-response profile for growth, implicating AR as the exclusive target for the activity of KCI838. KCI838's molecular scaffold conferred reduced enzyme induction in primary human hepatocytes and weakened interactions with human UGT1A1 and CYP1A2. In mice bearing an aggressive, enzalutamide-resistant patient-derived PCa tumor xenograft characteristically overexpressing prostatic acid phosphatase, daily bolus injections of a soluble 3'phosphate monoester prodrug of KCI838 (KCI838PME) progressively inhibited tumor growth, concomitant with tumor accumulation of active hydrophobic drug, without significant toxicity. Additionally, ALZET osmotic pumps were used to establish proof-of-concept for reversible in vivo anti-tumor activity of KCI838PME administered in a low dose, controlled release mode. The results warrant investigation of KCI838PME in a controlled-release formulation, to treat PCa that is resistant to current AR-targeted therapies while obviating the need for testosterone suppression.
Insights
Researchers developed KCI838, a potent inhibitor targeting the Androgen Receptor (AR) and ELK1 interaction, to treat advanced prostate cancer (PCa). This new compound effectively reduced tumor growth in resistant PCa models with reduced toxicity, offering a promising therapeutic avenue.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Androgen receptor (AR)-dependent prostate cancer (PCa) relies on ELK1 co-activation for cell cycle gene expression, irrespective of hormone sensitivity.
- Existing AR antagonists like KCI807 face limitations due to auto-induced metabolism, hindering their therapeutic potential.
- Developing novel compounds that inhibit the AR-ELK1 interaction is crucial for overcoming treatment resistance in PCa.
Purpose of the Study:
- To design and synthesize a new class of AR antagonists based on structure-activity data of KCI807.
- To evaluate the efficacy and mechanism of action of the novel compound KCI838 and its prodrug KCI838PME in preclinical PCa models.
- To assess the therapeutic potential of KCI838PME in enzalutamide-resistant and AR splice variant-dependent PCa.
Main Methods:
- Development of novel quinolinone-based compounds, including KCI838, by modifying the KCI807 scaffold.
- In vitro evaluation of KCI838's inhibitory effects on AR-dependent cell growth, colony formation, and ELK1/ARE promoter activity in PCa cell lines.
- In vivo studies using patient-derived xenografts in mice treated with KCI838PME via bolus injections and osmotic pumps.
Main Results:
- KCI838 demonstrated potent and rapid inhibition of AR-dependent cell growth and colony formation, including in enzalutamide-resistant and AR splice variant-dependent PCa models.
- KCI838 selectively inhibited ELK1-dependent activation and blocked AR-ELK1 binding, confirming its mode of action.
- KCI838PME significantly inhibited tumor growth in aggressive, enzalutamide-resistant PCa xenografts with minimal toxicity and demonstrated reversible in vivo activity.
Conclusions:
- KCI838 represents a novel and potent AR-ELK1 inhibitor with a favorable preclinical profile for treating resistant prostate cancer.
- The prodrug KCI838PME shows significant therapeutic potential for advanced PCa, offering an alternative to current AR-targeted therapies.
- Further investigation of KCI838PME in controlled-release formulations is warranted for clinical development in patients with treatment-resistant PCa.
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