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Updated: Jan 29, 2026

miRNA Expression Analyses in Prostate Cancer Clinical Tissues
Published on: September 8, 2015
Therapeutic Considerations for Ron Receptor Expression in Prostate Cancer
Nicholas E Brown1, Camille Sullivan1, Susan E Waltz1,2
1Department of Cancer Biology, University of Cincinnati College of Medicine, Cincinnati, OH 45267, USA.
Introduction:
The Ron receptor tyrosine kinase was initially discovered as a protein which played a critical role in regulating inflammatory responses. This effect was primarily determined through studies in various macrophage populations. Since its initial discovery, a role has emerged for Ron as a driver of cancer within epithelial cells. After numerous publications have detailed a role for Ron in promoting tumor initiation, growth, and metastasis, Ron has been designated as an emerging therapeutic option in a variety of cancers.
Areas Covered:
This review discusses the current literature regarding the role of Ron in prostate cancer and places special emphasis on the role of Ron in both epithelial cells and macrophages. Whole body loss of Ron signaling initially exposed a variety of prostate cancer growth mechanisms regulated by Ron. With the knowledge that Ron plays an integral part in regulating the function of epithelial cells and macrophages, studies commenced to discern the cell type specific functions for Ron in prostate cancer. A novel role for Ron in promoting Castration Resistant Prostate Cancer has recently been uncovered, and the results of these studies are summarized herein. Furthermore, this review gives a summary of several currently available compounds which show promise at targeting Ron in both epithelial and macrophage populations.
Outlook:
Sufficient evidence has been provided for the initiation of clinical trials focused on targeting Ron in both macrophage and epithelial compartments for the treatment of prostate cancer. A number of therapeutic avenues for targeting Ron in prostate cancer are currently available; however, special consideration will need to take place knowing that Ron signaling impacts multiple cell types. Further understanding of the cell type specific functions of Ron in prostate cancer will help inform and shape future clinical research and therapeutic strategies.
Insights
The Ron receptor tyrosine kinase plays a key role in prostate cancer progression, impacting both epithelial cells and macrophages. Targeting Ron offers a promising therapeutic strategy for various prostate cancer types, including Castration Resistant Prostate Cancer.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- The Ron receptor tyrosine kinase (RTK) was initially identified for its role in inflammatory responses, particularly in macrophages.
- Subsequent research revealed Ron's involvement as a driver of cancer in epithelial cells, promoting tumor initiation, growth, and metastasis.
- Ron is recognized as an emerging therapeutic target in various cancers.
Purpose of the Study:
- This review synthesizes current literature on Ron's function in prostate cancer.
- It specifically examines Ron's dual role in both prostate epithelial cells and macrophages.
- The review highlights novel findings regarding Ron's involvement in Castration Resistant Prostate Cancer (CRPC).
Main Methods:
- Literature review of studies investigating Ron signaling in prostate cancer.
- Analysis of research detailing cell-type-specific functions of Ron in prostate cancer.
- Summary of current therapeutic compounds targeting Ron.
Main Results:
- Loss of Ron signaling revealed multiple prostate cancer growth mechanisms.
- Ron influences both epithelial cells and macrophages in prostate cancer.
- A new role for Ron in promoting Castration Resistant Prostate Cancer has been identified.
Conclusions:
- Clinical trials targeting Ron in both epithelial and macrophage compartments for prostate cancer are warranted.
- Multiple therapeutic strategies exist for targeting Ron in prostate cancer.
- Understanding cell-type-specific functions of Ron is crucial for future research and treatment strategies.
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