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Updated: Jun 26, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Src as a therapeutic target in men with prostate cancer and bone metastases
1CHUM, University of Montreal, Montreal, Quebec, Canada. fredsaad@videotron.ca
Abstract:
While responsive to androgen ablation in its early stages, prostate cancer eventually becomes castration-resistant and metastasizes preferentially to bone. Once this happens, the disease carries considerable morbidity and is incurable. The process of bone metastasis involves a complex interplay between tumour and bone tissue. The eventual characteristic clinical presentation of disorganized osteoblastic bone lesions is preceded by a facilitatory osteoblastic phase; an osteoblastic component then continues to underlie the process. Increasing evidence has shown a ubiquitous role for Src (a proto-oncogene tyrosine-protein kinase) in multiple tumour and bone-signalling processes involved in prostate tumour progression, driving proliferation, survival, migration and transition to androgen-independent growth. It is also intimately involved in positively regulating osteoclast physiology. As such, this molecule represents an attractive target for managing progressing prostate cancer. Encouraging results have been obtained in preclinical and clinical studies using Src inhibitors like AZD0530 and dasatinib. Both compounds reduced markers of bone resorption, in patients with cancer and those with advanced castration-resistant prostate cancer, respectively. Moreover, because Src is central to many mechanisms thought to be responsible for the development of castration resistance, adding Src inhibitors to a treatment regimen might reverse this phenomenon. As a result, many Src inhibitors are in preclinical development. This review explores Src inhibition as a strategy for managing bone metastasis in prostate cancer, with a particular focus on targeting the critical osteoclastic response. Other emerging and novel approaches are also considered.
Insights
Targeting Src kinase, crucial in prostate cancer bone metastasis and castration resistance, shows promise. Src inhibitors may reverse resistance and reduce bone resorption, offering new therapeutic strategies.
Area of Science:
- Oncology
- Bone Biology
- Molecular Biology
Background:
- Prostate cancer progresses to castration-resistant, bone-metastasizing disease.
- Bone metastasis involves complex tumor-bone interactions, including an osteoblastic phase.
- Src (proto-oncogene tyrosine-protein kinase) drives prostate cancer progression and bone metastasis.
Purpose of the Study:
- To review Src inhibition as a strategy for managing prostate cancer bone metastasis.
- To focus on targeting the osteoclastic response in bone metastasis.
- To consider emerging and novel therapeutic approaches.
Main Methods:
- Review of preclinical and clinical studies on Src inhibitors.
- Analysis of Src's role in tumor progression, castration resistance, and bone signaling.
- Exploration of Src's regulation of osteoclast physiology.
Main Results:
- Src kinase is implicated in prostate cancer proliferation, survival, migration, and androgen-independent growth.
- Src inhibitors (e.g., AZD0530, dasatinib) reduce bone resorption markers.
- Src inhibition is a potential strategy to reverse castration resistance.
Conclusions:
- Src is a key therapeutic target for advanced prostate cancer with bone metastasis.
- Targeting Src, particularly osteoclast activity, offers a promising approach.
- Src inhibitors may reverse castration resistance and manage bone metastasis.
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