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Updated: Jul 31, 2025

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Saracatinib synergizes with enzalutamide to downregulate androgen receptor activity in castration resistant prostate
Abstract:
Prostate cancer (PCa) remains the most diagnosed non-skin cancer amongst the American male population. Treatment for localized prostate cancer consists of androgen deprivation therapies (ADTs), which typically inhibit androgen production and the androgen receptor (AR). Though initially effective, a subset of patients will develop resistance to ADTs and the tumors will transition to castration-resistant prostate cancer (CRPC). Second generation hormonal therapies such as abiraterone acetate and enzalutamide are typically given to men with CRPC. However, these treatments are not curative and typically prolong survival only by a few months. Several resistance mechanisms contribute to this lack of efficacy such as the emergence of AR mutations, AR amplification, lineage plasticity, AR splice variants (AR-Vs) and increased kinase signaling. Having identified SRC kinase as a key tyrosine kinase enriched in CRPC patient tumors from our previous work, we evaluated whether inhibition of SRC kinase synergizes with enzalutamide or chemotherapy in several prostate cancer cell lines expressing variable AR isoforms. We observed robust synergy between the SRC kinase inhibitor, saracatinib, and enzalutamide, in the AR-FL+/AR-V+ CRPC cell lines, LNCaP95 and 22Rv1. We also observed that saracatinib significantly decreases AR Y 534 phosphorylation, a key SRC kinase substrate residue, on AR-FL and AR-Vs, along with the AR regulome, supporting key mechanisms of synergy with enzalutamide. Lastly, we also found that the saracatinib-enzalutamide combination reduced DNA replication compared to the saracatinib-docetaxel combination, resulting in marked increased apoptosis. By elucidating this combination strategy, we provide pre-clinical data that suggests combining SRC kinase inhibitors with enzalutamide in select patients that express both AR-FL and AR-Vs.
Insights
SRC kinase inhibition synergizes with enzalutamide in castration-resistant prostate cancer (CRPC) expressing androgen receptor variants (AR-Vs). This combination reduces DNA replication and increases apoptosis, offering a potential new treatment strategy for advanced prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Prostate cancer (PCa) is a leading cancer diagnosis in men, often treated with androgen deprivation therapies (ADTs).
- Resistance to ADTs leads to castration-resistant prostate cancer (CRPC), with limited efficacy from current second-generation therapies like enzalutamide.
- Mechanisms of resistance include androgen receptor (AR) mutations, amplification, splice variants (AR-Vs), and enhanced kinase signaling, notably SRC kinase.
Approach:
- Investigated the synergistic potential of SRC kinase inhibition with enzalutamide or docetaxel in CRPC cell lines with varying AR isoforms.
- Utilized the SRC kinase inhibitor saracatinib in combination studies.
- Assessed effects on AR phosphorylation, AR regulome, DNA replication, and apoptosis.
Key Points:
- Saracatinib demonstrated robust synergy with enzalutamide in CRPC cell lines expressing both full-length AR (AR-FL) and AR-Vs.
- Saracatinib significantly reduced AR Y534 phosphorylation on both AR-FL and AR-Vs, impacting the AR regulome.
- The saracatinib-enzalutamide combination markedly reduced DNA replication and increased apoptosis compared to saracatinib-docetaxel.
Conclusions:
- SRC kinase inhibition, specifically with saracatinib, synergizes with enzalutamide in CRPC models expressing AR-FL and AR-Vs.
- This combination targets key resistance mechanisms by reducing AR signaling and DNA replication.
- Provides pre-clinical rationale for combining SRC kinase inhibitors with enzalutamide in specific CRPC patient populations.
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