RANK/RANKL/OPG signaling pathways in necrotic jaw bone from bisphosphonate-treated subjects

C Di Nisio1, V L Zizzari, S Zara

  • 1University of Chieti "G. d'Annunzio". c.dinisio@unich.it.

Insights

Osteonecrosis of the jaw (ONJ) in bisphosphonate patients involves altered bone matrix and increased RANK/RANKL signaling. Bacterial lipopolysaccharides may trigger this pathway, with osteoclast activation potentially limiting necrotic bone spread.

Area of Science:

  • Oral pathology
  • Bone biology
  • Pharmacology

Background:

  • Osteonecrosis of the jaw (ONJ) is a serious complication in patients on long-term bisphosphonate therapy.
  • The exact mechanisms driving ONJ pathogenesis remain unclear.
  • Understanding these mechanisms is crucial for developing effective treatments.

Purpose of the Study:

  • To investigate the role of the RANK/RANKL/OPG signaling pathway in bisphosphonate-related ONJ.
  • To evaluate angiogenic and matrix mineralization processes in ONJ bone samples.
  • To explore potential triggers and host responses in ONJ development.

Main Methods:

  • Analysis of necrotic and healthy jaw bone samples using Light and Field Emission in Lens Scanning Electron Microscopy (FEISEM).
  • Real-Time RT-PCR to assess gene expression of RANK, RANKL, and OPG.
  • Immunohistochemical analysis for VEGF and Bone Sialoprotein (BSP) expression.

Main Results:

  • Necrotic bone exhibited empty osteocytic lacunae, altered lamellar organization, and degraded mineralized matrix.
  • Significant upregulation of RANK, RANKL, TRAF6, and NFAT2 gene expression was observed in ONJ samples.
  • A decrease in OPG gene transcription and lower BSP expression were noted in necrotic bone compared to controls; VEGF expression showed no significant difference.

Conclusions:

  • While bisphosphonate-associated ONJ pathogenesis is not fully understood, oral pathogens appear to play a role.
  • Bacterial lipopolysaccharides may activate the RANK/RANKL/OPG pathway in ONJ.
  • Osteoclast activation might serve as a host defense mechanism to contain necrotic bone and combat infection.