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Updated: Aug 13, 2025

Treatment with Vancomycin Loaded Calcium Sulphate and Autogenous Bone in an Improved Rabbit Model of Bone Infection
Published on: March 14, 2019
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.
Abstract:
Introduction: biomaterials combined with antibiotics are routinely used for the management of bone infections. After eluting high concentrations of antibiotics during the first week, sub-inhibitory concentrations of antibiotics may lead to late repopulation of recalcitrant bacteria. Recent studies have shown that systemically given antibiotics like tetracycline and rifampicin (RIF) could seek and bind to locally implanted hydroxyapatite (HA). The aim of this in vivo study was to test if systemically administered rifampicin could replenish HA-based biomaterials with or without prior antibiotic loading to protect the material from late bacterial repopulation. Methods: in vivo accretion of systemically administered RIF to three different types of HA-based materials was tested. In group 1, nano (n)- and micro (m)-sized HA particles were used, while group 2 consisted of a calcium sulfate hydroxyapatite (CaS HA) biomaterial without preloaded antibiotics gentamycin (GEN) or vancomycin (VAN), and in group 3, the CaS HA material contained GEN (CaS HA GEN) or VAN (CaS HA VAN). The above materials were implanted in an abdominal muscle pouch model in rats, and at 7 d post-surgery, the animals were assigned to a control group (i.e., no systemic antibiotic) and a test group (i.e., animals receiving one single intraperitoneal injection of RIF each day (4 mg per rat) for 3 consecutive days). Twenty-four hours after the third injection, the animals were sacrificed and the implanted pellets were retrieved and tested against Staphylococcus aureus ATCC 25923 in an agar diffusion assay. After overnight incubation, the zone of inhibition (ZOI) around the pellets were measured. Results: in the control group, CaS HA GEN pellets had a ZOI, while all other harvested pellets had no ZOI. No pellets from animals in test group 1 had a ZOI. In test group 2, CaS HA pellets showed a ZOI. In test group 3, CaS HA GEN and CaS HA VAN pellets showed a ZOI. Conclusions: in this proof-of-concept study, we have shown that a locally implanted biphasic CaS HA carrier after 1 week can be loaded by systemic RIF administration and exert an antibacterial effect. Further in vivo infection models are necessary to validate our findings.
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.

