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Updated: Dec 20, 2025

miRNA Expression Analyses in Prostate Cancer Clinical Tissues
Published on: September 8, 2015
Prostate Epithelial RON Signaling Promotes M2 Macrophage Activation to Drive Prostate Tumor Growth and Progression
Camille Sullivan1, Nicholas E Brown1, Juozas Vasiliauskas1
1Department of Cancer Biology, University of Cincinnati College of Medicine, Cincinnati, Ohio.
Abstract:
Effective treatment of advanced prostate cancer persists as a significant clinical need as only 30% of patients with distant disease survive to 5 years after diagnosis. Targeting signaling and tumor cell-immune cell interactions in the tumor microenvironment has led to the development of powerful immunotherapeutic agents, however, the prostate tumor milieu remains impermeable to these strategies highlighting the need for novel therapeutic targets. In this study, we provide compelling evidence to support the role of the RON receptor tyrosine kinase as a major regulator of macrophages in the prostate tumor microenvironment. We show that loss of RON selectively in prostate epithelial cells leads to significantly reduced prostate tumor growth and metastasis and is associated with increased intratumor infiltration of macrophages. We further demonstrate that prostate epithelial RON loss induces transcriptional reprogramming of macrophages to support expression of classical M1 markers and suppress expression of alternative M2 markers. Interestingly, our results show epithelial RON activation drives upregulation of RON expression in macrophages as a positive feed-forward mechanism to support prostate tumor growth. Using 3D coculture assays, we provide additional evidence that epithelial RON expression coordinates interactions between prostate tumor cells and macrophages to promote macrophage-mediated tumor cell growth. Taken together, our results suggest that RON receptor signaling in prostate tumor cells directs the functions of macrophages in the prostate tumor microenvironment to promote prostate cancer. IMPLICATIONS: Epithelial RON is a novel immunotherapeutic target that is responsible for directing the macrophage antitumor immune response to support prostate tumor growth and progression.
Insights
Researchers identified the RON receptor tyrosine kinase as a key regulator of macrophages in prostate tumors. Targeting epithelial RON may enhance anti-tumor immunity and improve outcomes for advanced prostate cancer patients.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Advanced prostate cancer has a poor prognosis, with limited effective treatments.
- The tumor microenvironment, including immune cell interactions, is crucial for cancer progression.
- Novel therapeutic targets are needed to overcome resistance to current immunotherapies in prostate cancer.
Purpose of the Study:
- To investigate the role of the RON receptor tyrosine kinase in regulating macrophages within the prostate tumor microenvironment.
- To determine if targeting epithelial RON can impact prostate tumor growth, metastasis, and immune cell function.
Main Methods:
- Utilized genetically modified mouse models with selective loss of RON in prostate epithelial cells.
- Analyzed tumor growth, metastasis, and macrophage infiltration.
- Performed transcriptional profiling of tumor-associated macrophages.
- Employed 3D co-culture assays to study cell-cell interactions.
Main Results:
- Loss of epithelial RON significantly reduced prostate tumor growth and metastasis.
- Reduced RON expression in epithelial cells led to increased intratumor macrophage infiltration.
- Macrophage reprogramming towards an anti-tumor M1 phenotype was observed.
- Epithelial RON activation promoted macrophage RON expression, creating a pro-tumorigenic feedback loop.
Conclusions:
- Epithelial RON signaling is a critical regulator of macrophage function in the prostate tumor microenvironment.
- RON receptor signaling in tumor cells directs macrophages to promote prostate cancer progression.
- Epithelial RON represents a promising novel immunotherapeutic target for advanced prostate cancer.
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