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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
Cabozantinib and IL-27 combinatorial therapy for bone-metastatic prostate cancer
Shreya Kumar1, Grace E Mulia1, Marxa L Figueiredo1
1Department of Basic Medical Sciences, College of Veterinary Medicine, Purdue University, West Lafayette, IN, United States.
Abstract:
Introduction: Prostate cancer is the second leading cause of cancer-related death among American men. Prostate tumor cells exhibit significant tropism for the bone and once metastasis occurs, survival rates fall significantly. Current treatment options are not curative and focus on symptom management. Immunotherapies are rapidly emerging as a possible therapeutic option for a variety of cancers including prostate cancer, however, variable patient response remains a concern. Chemotherapies, like cabozantinib, can have immune-priming effects which sensitize tumors to immunotherapies. Additionally, lower doses of chemotherapy can be used in this context which can reduce patient side effects. We hypothesized that a combination of chemotherapy (cabozantinib) and immunotherapy [Interleukin-27 (IL-27)] could be used to treat bone-metastatic prostate cancer and exert pro-osteogenic effects. IL-27 is a multi-functional cytokine, which promotes immune cell recruitment to tumors, while also promoting bone repair. Methods: To test this hypothesis, in vivo experiments were performed where syngeneic C57BL/6J mice were implanted intratibially with TRAMP-C2ras-Luc cells that are able to form tumors in bone. Immunotherapy was administered in the form of intramuscular gene therapy, delivering plasmid DNA encoding a reporter gene (Lucia), and/or a therapeutic gene (IL-27). Sonoporation was used to aid gene delivery. Following immunotherapy, the animals received either cabozantinib or a vehicle control by oral gavage. Bioluminescence imaging was used to monitor tumor size over time. Results: Combinatorial therapy inhibited tumor growth and improved survival. Further, RNA sequencing was used to investigate the mechanisms involved. Microcomputed tomography and differentiation assays indicated that the combination therapy improved bone quality by enhancing osteoblast differentiation and inhibiting osteoclast differentiation. Discussion: Our conclusion is that a chemo-immunotherapy approach such as the one examined in this work has potential to emerge as a novel therapeutic strategy for treating bone-metastatic prostate cancer. This approach will enable a significant reduction in chemotherapy-associated toxicity, enhance sensitivity to immunotherapy, and improve bone quality.
Insights
Combining cabozantinib chemotherapy with Interleukin-27 (IL-27) immunotherapy effectively treats bone-metastatic prostate cancer. This novel approach inhibits tumor growth, improves survival, and enhances bone quality by modulating immune responses and bone cell activity.
Area of Science:
- Oncology
- Immunotherapy
- Bone Metastasis
Background:
- Prostate cancer bone metastasis significantly reduces survival rates, with current treatments offering limited efficacy.
- Variable patient response to immunotherapy necessitates novel therapeutic strategies.
- Chemotherapy, such as cabozantinib, can enhance tumor sensitivity to immunotherapy, potentially allowing for reduced side effects.
Purpose of the Study:
- To investigate the efficacy of combining cabozantinib chemotherapy with Interleukin-27 (IL-27) immunotherapy for treating bone-metastatic prostate cancer.
- To assess the impact of this combinatorial therapy on tumor growth, survival, and bone quality.
- To explore the underlying mechanisms of action for the chemo-immunotherapy approach.
Main Methods:
- In vivo experiments using syngeneic mice with intratibial TRAMP-C2ras-Luc prostate cancer cell implantation.
- Intramuscular gene therapy delivering IL-27 via sonoporation, followed by oral cabozantinib or vehicle administration.
- Bioluminescence imaging for tumor monitoring, RNA sequencing for mechanistic studies, and microcomputed tomography for bone assessment.
Main Results:
- Combinatorial chemo-immunotherapy significantly inhibited tumor growth and improved overall survival in mice.
- RNA sequencing revealed underlying molecular mechanisms of the combined treatment.
- Microcomputed tomography and differentiation assays demonstrated improved bone quality, characterized by enhanced osteoblast and inhibited osteoclast differentiation.
Conclusions:
- Combined cabozantinib and IL-27 immunotherapy presents a promising novel therapeutic strategy for bone-metastatic prostate cancer.
- This approach offers potential for reduced chemotherapy toxicity and enhanced immunotherapy efficacy.
- The treatment strategy also shows potential for improving bone quality in metastatic settings.
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