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.

Bone
|March 23, 2011
PubMed

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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