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Updated: Jun 6, 2025

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Vaccination Against Androgen Receptor Splice Variants to Immunologically Target Prostate Cancer
Robert D Marek1, Selena Halabi2, Mu-En Wang1,3
1Department of Pathology, Duke University, Durham, NC 27710, USA.
Abstract:
Background/Objectives: Androgen receptor (AR) expression and signaling are critical for the progression of prostate cancer and have been the therapeutic focus of prostate cancer for over 50 years. While a variety of agents have been developed to target this axis, many of these fail due to the emergent expression of AR RNA splice variants, such as AR-V7, that can signal independently of ligand binding. Other therapies, such as vaccination against prostate-specific antigens, have achieved FDA approvals but have fallen short of being incorporated as standard-of-care therapies for advanced prostate cancer. This may be due to the elevated level of immunosuppression observed in prostate cancer, which remains largely refractory to immune checkpoint blockade. Methods: We developed a vaccine targeting AR-V7, a common isoform associated with treatment resistance, and demonstrated its ability to elicit AR-V7-specific immunity and enable anti-tumor responses against AR-V7+ cancers in subcutaneous tumor models. Results: Our studies also revealed that AR-V7 expression conferred an immune suppressive phenotype that was significant in a non-AR-dependent prostate cancer model. Notably, in this model, we found that vaccination in combination with enzalutamide, an AR antagonist, suppressed these aggressive immune suppressive cancers and resulted in enhanced survival in comparison to control vaccinated and enzalutamide-treated mice. While anti-PD-1 immune checkpoint inhibition (ICI) alone slowed tumor growth, the majority of vaccinated mice that received anti-PD-1 therapy showed complete tumor elimination. Conclusions: Collectively, these results validate the importance of AR signaling in prostate cancer immune suppression and suggest the potential of AR-V7-specific vaccines as therapeutic strategies against prostate cancer, offering significant protective and therapeutic anti-tumor responses, even in the presence of androgen signaling inhibitors.
Insights
A novel vaccine targeting the androgen receptor variant 7 (AR-V7) shows promise in combating prostate cancer by overcoming immune suppression and enhancing treatment efficacy, even with existing therapies.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Androgen receptor (AR) signaling drives prostate cancer progression, but therapies often fail due to AR splice variants like AR-V7.
- Prostate cancer exhibits significant immunosuppression, limiting the effectiveness of current treatments like immune checkpoint inhibitors.
- Existing therapies targeting AR axis and PSA-based vaccines have not become standard care for advanced prostate cancer.
Purpose of the Study:
- To develop and evaluate a vaccine targeting the AR-V7 splice variant.
- To investigate the role of AR-V7 in prostate cancer-mediated immunosuppression.
- To assess the therapeutic potential of an AR-V7 vaccine in combination with other treatments.
Main Methods:
- Development of a vaccine targeting AR-V7.
- Testing the vaccine's ability to induce AR-V7-specific immunity and anti-tumor responses in preclinical models.
- Evaluating the combination of AR-V7 vaccination with enzalutamide (an AR antagonist) and anti-PD-1 immune checkpoint inhibition.
Main Results:
- The AR-V7 vaccine elicited specific immunity and anti-tumor responses in AR-V7+ cancer models.
- AR-V7 expression was found to promote an immune-suppressive phenotype.
- Combination therapy of AR-V7 vaccine with enzalutamide suppressed aggressive tumors and improved survival.
- Vaccination combined with anti-PD-1 therapy led to complete tumor elimination in most cases.
Conclusions:
- AR signaling plays a crucial role in prostate cancer immune suppression.
- AR-V7-specific vaccines represent a potential therapeutic strategy for prostate cancer.
- These vaccines offer significant anti-tumor responses, even when used with androgen signaling inhibitors.
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