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Updated: Apr 26, 2026

Intra-Cardiac Injection of Human Prostate Cancer Cells to Create a Bone Metastasis Xenograft Mouse Model
Published on: November 4, 2022
Castration-induced bone loss triggers growth of disseminated prostate cancer cells in bone
Penelope D Ottewell1, Ning Wang2, Joshua Meek2
1Academic Unit of Clinical Oncology, Department of OncologyBone Biology, Department of Human Metabolism, Medical School, University of SheffieldBeech Hill Road, Sheffield S10 2RX, UKMusculoskeletal Medicine DivisionGarvan Institute of Medical Research, Sydney, New South Wales, Australia p.d.ottewell@sheffield.ac.uk.
Abstract:
Up to 90% of patients with castrate-resistant prostate cancer develop bone metastases, and the majority of these men have received androgen deprivation therapy known to cause bone loss. Whether this treatment-induced change to the bone microenvironment affects disseminated tumour cells, potentially stimulating development of bone metastasis, remains to be determined. The objective of this study was to use an in vivo model mimicking androgen ablation to establish the effects of this intervention on disseminated prostate cancer cells in bone. We mimicked the effects of androgen deprivation on bone metastasis by castrating 12-week-old BALB/c nude mice that had disseminated, hormone-insensitive PC3 prostate cancer cells present in the long bones. Castration caused increased bone resorption and loss of bone volume, compared with sham operation. In addition, castration triggered growth of disseminated PC3 cells to form bone metastasis in 70% of animals. In contrast, only 10% of sham-operated animals had detectable long bone tumours. Weekly administration of 100 microg/kg zoledronic acid (ZOL) prevented castration-induced tumour growth in bone and increased bone volume, but did not eliminate the disseminated tumour cells. ZOL had no effect on tumour growth in the sham-operated animals, despite causing a significant increase in bone volume. This is the first demonstration that, in a model of prostate cancer bone metastasis, mimicking androgen ablation results in growth of disseminated tumour cells in bone through osteoclast-mediated mechanisms. We provide the first biological evidence supporting the administration of ZOL to prostate cancer patients at the time of androgen ablation to prevent subsequent relapse in bone.
Insights
Androgen deprivation therapy in prostate cancer patients can stimulate bone metastasis growth. Zoledronic acid (ZOL) administration during this therapy may prevent bone relapse by inhibiting tumor growth.
Area of Science:
- Oncology
- Bone Metastasis Research
- Prostate Cancer Therapeutics
Background:
- Androgen deprivation therapy (ADT) is standard for prostate cancer but causes bone loss.
- Bone loss may influence the development of bone metastases from disseminated prostate cancer cells.
- The effect of ADT-induced bone changes on prostate cancer cell growth in bone is not well understood.
Purpose of the Study:
- To investigate the impact of androgen ablation on disseminated prostate cancer cells in bone using an in vivo model.
- To determine if zoledronic acid (ZOL) can mitigate ADT-induced bone metastasis growth.
Main Methods:
- Male BALB/c nude mice with disseminated PC3 prostate cancer cells in long bones were subjected to castration (mimicking ADT) or sham operation.
- Bone resorption, bone volume, and tumor growth were assessed.
- Mice received weekly zoledronic acid (ZOL) or vehicle treatment.
Main Results:
- Castration significantly increased bone resorption and bone loss, and led to bone metastasis in 70% of animals, compared to 10% in sham-operated controls.
- Zoledronic acid (ZOL) administration prevented castration-induced bone metastasis growth and preserved bone volume, but did not eliminate disseminated tumor cells.
- ZOL alone did not affect tumor growth in sham-operated mice but increased bone volume.
Conclusions:
- Androgen ablation in a prostate cancer bone metastasis model promotes disseminated tumor cell growth via osteoclast-mediated mechanisms.
- This study provides the first evidence supporting ZOL administration concurrently with ADT in prostate cancer patients to prevent bone relapse.
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