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Bisphosphonates inhibit prostate and breast carcinoma cell adhesion to unmineralized and mineralized bone

S Boissier1, S Magnetto, L Frappart

  • 1Institut National de la Santé et de la Recherche Médicale Research Unit 403, Pavillon F, Hôpital Edouard Herriot, Lyon, France.

Cancer Research
|October 27, 1997
PubMed

Insights

Bisphosphonates (BPs) directly inhibit cancer cell adhesion to bone, offering a potential prophylactic treatment for bone metastases. This effect is dose-dependent and specific to tumor cells, not normal cells.

Area of Science:

  • Oncology
  • Pharmacology
  • Cell Biology

Background:

  • Osteolytic metastases involve tumor cell adhesion and osteoclast activation.
  • Bisphosphonates (BPs) inhibit osteoclast activity and are used to treat bone metastases.
  • Understanding direct effects of BPs on tumor cells is crucial for optimizing cancer therapy.

Purpose of the Study:

  • To investigate the effect of BPs on breast and prostate carcinoma cell adhesion to bone extracellular matrices.
  • To determine the dose-dependency and specificity of BP-mediated inhibition of tumor cell adhesion.
  • To explore the mechanism of BP action on tumor cell-bone interactions.

Main Methods:

  • In vitro assessment of tumor cell and fibroblast adhesion to mineralized and unmineralized bone extracellular matrices.
  • Pretreatment of cells with various bisphosphonates (BPs) at different concentrations.
  • Evaluation of BP cytotoxicity using [3H]thymidine incorporation assays.
  • Analysis of cell surface integrin expression.

Main Results:

  • BP pretreatment significantly inhibited tumor cell adhesion to bone matrices in a dose-dependent manner.
  • Normal fibroblast adhesion was unaffected by BPs, indicating specificity.
  • Potency order for inhibition: ibandronate > NE-10244 > pamidronate > clodronate.
  • BPs did not exhibit cytotoxicity at effective concentrations and did not alter integrin expression.

Conclusions:

  • BPs exert a direct cellular effect by preventing tumor cell adhesion to bone.
  • This anti-adhesive property suggests BPs could be valuable for prophylactic treatment of bone metastases.
  • The stereospecificity of BP action implies a targeted cellular recognition mechanism.

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