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Updated: Feb 13, 2026

Intra-Cardiac Injection of Human Prostate Cancer Cells to Create a Bone Metastasis Xenograft Mouse Model
Published on: November 4, 2022
Bone-targeted therapies to reduce skeletal morbidity in prostate cancer
Tanya B Dorff1, Neeraj Agarwal2
1USC Keck School of Medicine, USC Norris Comprehensive Cancer Center, Genitourinary Oncology, Los Angeles, CA 90033, USA.
Abstract:
Bone metastases are the main driver of morbidity and mortality in advanced prostate cancer. Targeting the bone microenvironment, a key player in the pathogenesis of bone metastasis, has become one of the mainstays of therapy in men with advanced prostate cancer. This review will evaluate the data supporting the use of bone-targeted therapy, including (1) bisphosphonates such as zoledronic acid, which directly target osteoclasts, (2) denosumab, a receptor activator of nuclear factor-kappa B (RANK) ligand inhibitor, which targets a key component of bone stromal interaction, and (3) radium-223, an alpha-emitting calcium mimetic, which hones to the metabolically active areas of osteoblastic metastasis and induces double-strand breaks in the DNA. Denosumab has shown enhanced delay in skeletal-related events compared to zoledronic acid in patients with metastatic castration-resistant prostate cancer (mCRPC). Data are mixed with regard to pain control as a primary measure of efficacy. New data call into question dosing frequency, with quarterly dosing strategy potentially achieving similar effect compared to monthly dosing for zoledronic acid. In the case of radium-223, there are data for both pain palliation and improved overall survival in mCRPC. Further studies are needed to optimize timing and combination strategies for bone-targeted therapies. Ongoing studies will explore the impact of combining bone-targeted therapy with investigational therapeutic agents such as immunotherapy, for advanced prostate cancer. Future studies should strive to develop biomarkers of response, in order to improve efficacy and cost-effectiveness of these agents.
Insights
Bone-targeted therapies like zoledronic acid, denosumab, and radium-223 are crucial for advanced prostate cancer. Research is ongoing to optimize their use and combinations for better patient outcomes.
Area of Science:
- Oncology
- Bone Metastasis Research
- Prostate Cancer Therapeutics
Background:
- Bone metastases significantly increase morbidity and mortality in advanced prostate cancer.
- The bone microenvironment plays a critical role in the development of bone metastasis.
- Bone-targeted therapies are now a cornerstone in managing advanced prostate cancer.
Purpose of the Study:
- To review current bone-targeted therapies for advanced prostate cancer.
- To evaluate the efficacy of bisphosphonates (zoledronic acid), denosumab, and radium-223.
- To discuss future directions including combination strategies and biomarkers.
Main Methods:
- Review of clinical data on bone-targeted therapies.
- Comparison of denosumab versus zoledronic acid for skeletal-related events.
- Evaluation of radium-223 for pain palliation and survival in metastatic castration-resistant prostate cancer (mCRPC).
Main Results:
- Denosumab demonstrated a superior delay in skeletal-related events compared to zoledronic acid in mCRPC patients.
- Efficacy data for pain control remain mixed across different bone-targeted agents.
- Radium-223 shows promise for pain palliation and improving overall survival in mCRPC.
Conclusions:
- Further research is required to optimize the timing and combination of bone-targeted therapies.
- Investigational studies are exploring combinations with immunotherapy and other agents.
- Development of response biomarkers is essential for improving efficacy and cost-effectiveness.
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