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Updated: Jun 3, 2026

Osteoclast Derivation from Mouse Bone Marrow
Published on: November 6, 2014
Drugs which inhibit osteoclast function suppress tumor growth through calcium reduction in bone
Xin Li1, Jinhui Liao, Serk In Park
1Periodontics and Oral Medicine, University of Michigan, Ann Arbor, MI, USA.
Abstract:
Prostate carcinoma frequently metastasizes to bone where the microenvironment facilitates its growth. Inhibition of bone resorption is effective in reducing tumor burden and bone destruction in prostate cancer. However, whether drugs that inhibit osteoclast function inhibit tumor growth independent of inhibition of bone resorption is unclear. Calcium is released during bone resorption and the calcium sensing receptor is an important regulator of cancer cell proliferation. The goal of this investigation was to elucidate the role of calcium released during bone resorption and to determine the impact of drugs which suppress bone resorption on tumor growth in bone. To compare tumor growth in a skeletal versus non-skeletal site, equal numbers of canine prostate cancer cells expressing luciferase (ACE-1(luc)) were inoculated into a simple collagen matrix, neonatal mouse vertebrae (vossicles), human de-proteinized bone, or a mineralized collagen matrix. Implants were placed subcutaneously into athymic mice. Luciferase activity was used to track tumor growth weekly, and at one month tumors were dissected for histologic analysis. Luciferase activity and tumor size were greater in vossicles, de-proteinized bone and mineralized collagen matrix versus non-mineralized collagen implants. The human osteoblastic prostate carcinoma cell line C4-2b also grew better in a mineral rich environment with a greater proliferation of C4-2b cells reflected by Ki-67 staining. Zoledronic acid (ZA), a bisphosphonate, and recombinant OPG-Fc, a RANKL inhibitor, were administered to mice bearing vertebral implants (vossicles) containing ACE-1 osteoblastic prostate cancer cells. Vossicles or collagen matrices were seeded with ACE-1(luc) cells subcutaneously in athymic mice (2 vossicles, 2 collagen implants/mouse). Mice received ZA (5 microg/mouse, twice/week), (OPG-Fc at 10mg/kg, 3 times/week) or vehicle, and luciferase activity was measured weekly. Histologic analysis of the tumors, vossicles and endogenous bones and serum biochemistry were performed. Antiresorptive administration was associated with decreased serum TRAP5b, reduced osteoclast numbers, and increased tibia and vossicle bone areas. ZA significantly decreased bone marrow calcium concentrations without affecting serum calcium. ZA and OPG-Fc significantly inhibited tumor growth in bone but not in collagen implants. In conclusion, the inhibitory effects of ZA or OPG-Fc on prostate tumor growth in bone are mediated via blocking bone resorption and calcium release from bone.
Insights
Bone-targeting drugs like zoledronic acid (ZA) and OPG-Fc inhibit prostate cancer growth in bone by blocking bone resorption and calcium release. These therapies are effective in reducing tumor burden in bone metastasis.
Area of Science:
- Oncology
- Bone Biology
- Cancer Metastasis
Background:
- Prostate cancer frequently metastasizes to bone, where the bone microenvironment supports tumor growth.
- Inhibiting bone resorption is a known strategy to reduce tumor burden and bone destruction in prostate cancer.
- The role of calcium released during bone resorption and its impact on cancer cell proliferation requires further elucidation.
Purpose of the Study:
- To investigate the role of calcium released during bone resorption in prostate cancer growth.
- To determine the impact of bone resorption-inhibiting drugs on tumor growth in bone versus non-skeletal sites.
Main Methods:
- Canine prostate cancer cells (ACE-1(luc)) were inoculated into collagen matrices, mouse vertebrae (vossicles), or de-proteinized/mineralized bone implants in athymic mice.
- Tumor growth was tracked weekly via luciferase activity, with tumors analyzed histologically after one month.
- Mice with vertebral implants received zoledronic acid (ZA) or OPG-Fc, with tumor growth, bone parameters, and serum biochemistry assessed.
Main Results:
- Tumor growth and size were significantly greater in skeletal sites (vossicles, bone) compared to non-mineralized collagen implants.
- Both ZA and OPG-Fc significantly inhibited prostate tumor growth in bone implants but not in collagen implants.
- Antiresorptive treatment reduced serum TRAP5b, decreased osteoclast numbers, and inhibited bone resorption, leading to increased bone area and reduced bone marrow calcium.
Conclusions:
- Prostate tumor growth in bone is enhanced by the mineral-rich bone microenvironment.
- The anti-tumor effects of ZA and OPG-Fc in bone are primarily mediated by inhibiting bone resorption and subsequent calcium release.
- Targeting bone resorption is a critical strategy for managing prostate cancer bone metastasis.
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