Metamizole does not affect fracture healing in a murine ischemia model

Christian Schönbeck1, Janine Stutz1, Sebastian T Schreiber1

  • 1Department of Trauma, Hand and Reconstructive Surgery, Saarland University, Homburg, Germany.

PubMed

Insights

Metamizole treatment did not impact fracture healing in mice with ischemic conditions, showing similar delayed healing in both treated and control groups. This suggests metamizole is safe for fracture patients with co-morbidities causing tissue ischemia.

Area of Science:

  • Orthopedics
  • Pharmacology
  • Regenerative Medicine

Background:

  • Metamizole is a common analgesic for fracture management.
  • Co-morbidities can cause ischemia, impairing bone healing.
  • The effect of metamizole on fracture healing under ischemia is unknown.

Purpose of the Study:

  • To investigate the effect of metamizole on fracture healing in an ischemic environment.
  • To assess if metamizole influences bone repair in the presence of impaired blood supply.

Main Methods:

  • 44 CD-1 mice underwent femoral artery ligation to induce ischemia.
  • Femurs were fractured and stabilized, with daily oral administration of metamizole (50 mg/kg) or vehicle.
  • Bone healing was evaluated using biomechanical, radiological, histomorphometrical, and Western blot analyses at 2 and 5 weeks.

Main Results:

  • Metamizole administration resulted in high plasma levels of 4-methyl-amino-antipyrine (4-MAA) and a peak in 4-amino-antipyrine (4-AA).
  • No significant differences in biomechanical, radiological, or histomorphometrical bone healing were observed between metamizole and control groups.
  • Both groups exhibited delayed fracture healing, with metamizole-treated mice showing increased Cyr61, RUNX2, and RANKL expression in callus tissue.

Conclusions:

  • Metamizole does not alter fracture healing outcomes under experimentally induced ischemic conditions.
  • The drug's application is deemed acceptable for fracture patients experiencing co-morbidities that lead to tissue ischemia.
  • Further research may explore the molecular mechanisms behind altered gene expression in response to metamizole during ischemic bone healing.

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