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Updated: Jul 15, 2026

Intra-Cardiac Injection of Human Prostate Cancer Cells to Create a Bone Metastasis Xenograft Mouse Model
Published on: November 4, 2022
The bisphosphonate YM529 inhibits osteoblastic bone tumor proliferation of prostate cancer
Hiroyuki Yonou1, Atsushi Ochiai, Satoshi Ashimine
1Department of Urology, Tokyo Medical University, Tokyo, Japan. yonou428@tokyo-med.ac.jp
Background:
In men, prostate cancer frequently metastasizes to the bones, where it forms osteoblastic lesions with an osteolytic element that cause pain. However, the role of osteoclastogenesis in bone metastasis of human prostate cancer is unknown. Bisphosphonates are already known to be beneficical for treating osteolytic bone metastases, so we employed a model of osteoblastic bone tumor of human prostate cancer to investigate whether a new bisphosphonate (YM529: minodronate) could inhibit both the formation of bone tumors and the progression of established osteoblastic tumors.
Methods:
Human prostate cancer cells (LNCaP) were injected into adult human bone implants in nonobese diabetic/severe combined immunodeficient mice, after which osteoblastic bone tumors developed. YM529 (1 microg/day) was administered subcutaneously every day for 2 weeks, starting either immediately or 2 weeks after implantation of the tumor cells, and the mice were sacrificed at 4 weeks after implantation. The bone tumors were examined histologically and the number of tartrate-resistant acid phosphatase-stained osteoclasts in each tumor focus was counted.
Results:
Histomorphometric analysis revealed that YM529 markedly inhibited both the formation of bone tumors and the progression of established tumors, as well as markedly reducing the number of osteoclasts.
Conclusions:
YM529 reduced the tumor burden in bone by inhibiting both the formation of new lesions and the progression of existing tumors, suggesting that osteoclasts are involved in the formation of bone tumors by prostate cancer. Treatment with this bisphosphonate may potentially be beneficial for patients with bone metastases of prostate cancer.
Insights
This study shows that the bisphosphonate YM529 (minodronate) effectively inhibits prostate cancer bone tumor formation and progression. YM529 also reduces osteoclast numbers, suggesting a role for osteoclasts in prostate cancer bone metastasis.
Area of Science:
- Oncology
- Bone Metastasis Research
- Pharmacology
Background:
- Prostate cancer frequently metastasizes to bone, forming painful osteoblastic lesions.
- The role of osteoclastogenesis in prostate cancer bone metastasis is not well understood.
- Bisphosphonates are effective in treating osteolytic bone metastases.
Purpose of the Study:
- To investigate the efficacy of a novel bisphosphonate, YM529 (minodronate), in a human prostate cancer bone metastasis model.
- To determine if YM529 can inhibit the formation and progression of osteoblastic bone tumors.
- To explore the role of osteoclastogenesis in prostate cancer bone metastasis.
Main Methods:
- Human prostate cancer cells (LNCaP) were xenografted into human bone implants in immunodeficient mice.
- YM529 was administered daily, starting either immediately or 2 weeks post-implantation.
- Tumor burden, bone tumor formation, progression, and osteoclast counts were assessed histologically.
Main Results:
- YM529 significantly inhibited the formation of new bone tumors.
- YM529 markedly reduced the progression of established osteoblastic bone tumors.
- A significant reduction in osteoclast numbers was observed in YM529-treated mice.
Conclusions:
- YM529 effectively reduces tumor burden in bone by inhibiting both new lesion formation and existing tumor progression.
- The findings suggest that osteoclasts play a role in the development of bone tumors in prostate cancer.
- YM529 may offer a potential therapeutic benefit for patients with prostate cancer bone metastases.
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