Systemic rifampicin shows accretion to locally implanted hydroxyapatite particles in a rat abdominal muscle pouch

Sujeesh Sebastian1, Jintian Huang1, Yang Liu1

  • 1Department of Clinical Sciences, Orthopaedics, Faculty of Medicine, Lund University, Lund, Sweden.

Insights

Systemic rifampicin (RIF) can replenish antibiotic-loaded hydroxyapatite (HA) bone biomaterials, preventing late bacterial regrowth. This study shows RIF re-administration to HA carriers restores antibacterial activity against Staphylococcus aureus.

Area of Science:

  • Biomaterials Science
  • Infectious Disease Research
  • Pharmacology

Background:

  • Bone infections are managed with antibiotic-eluting biomaterials.
  • Sub-inhibitory antibiotic concentrations can lead to late bacterial repopulation.
  • Systemic antibiotics like rifampicin (RIF) can bind to hydroxyapatite (HA).

Purpose of the Study:

  • To determine if systemically administered RIF can replenish HA-based biomaterials.
  • To assess if replenished biomaterials can prevent late bacterial repopulation.
  • To evaluate RIF accretion to HA with or without prior antibiotic loading.

Main Methods:

  • In vivo study using rat abdominal muscle pouch model.
  • Implantation of nano/micro HA particles, calcium sulfate hydroxyapatite (CaS HA) without antibiotics, and CaS HA with gentamicin (GEN) or vancomycin (VAN).
  • Systemic RIF administration (4 mg/rat/day for 3 days) to test groups; control group received no RIF. Antibacterial activity assessed via agar diffusion assay against Staphylococcus aureus.

Main Results:

  • Control group: CaS HA GEN pellets showed a zone of inhibition (ZOI); others did not.
  • Test group 1 (n/m HA): No ZOI observed.
  • Test group 2 (CaS HA): Showed ZOI after RIF administration.
  • Test group 3 (CaS HA GEN/VAN): Showed ZOI after RIF administration.

Conclusions:

  • Locally implanted biphasic CaS HA carriers can be re-loaded with systemically administered RIF.
  • Systemic RIF administration restores antibacterial effect to the biomaterial carrier.
  • Further in vivo studies are needed to validate findings in infection models.

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