Evaluation of Calcium Dihydroxide- and Silver-Coated Implants in the Rat Tibia

Author:

Harrasser Norbert1,de Wild Michael2,Gorkotte Johannes1,Obermeier Andreas1,Feihl Susanne3,Straub Melanie4,von Eisenhart-Rothe Ruediger1,Gollwitzer Hans15,Rüegg Jasmine2,Moser Walter6,Gruner Philipp7,Burgkart Rainer1

Affiliation:

1. Clinic of Orthopedics and Sports Orthopedics, Klinikum rechts der Isar, Technical University of Munich, Munich - Germany

2. University of Applied Sciences and Arts Northwestern Switzerland (FHNW), School of Life Sciences, Muttenz - Switzerland

3. Institute for Medical Microbiology, Immunology and Hygiene, Technical University of Munich, Munich - Germany

4. Institute of Pathology, Klinikum rechts der Isar, Technical University of Munich, Munich - Germany

5. ATOS Clinic, Munich - Germany

6. Atesos Medical AG, Aarau - Switzerland

7. Medicoat AG, Maegenwil - Switzerland

Abstract

Background Silver ions (Ag+) have strong antibacterial effects, and silver-coated materials are in widespread clinical use. However, the application of silver-coated medical devices is not without concerns: its use with direct bone contact is not established, and systemic toxic side effects of released Ag+ have been described. Therefore, alternative bactericidal coatings with a more localized way of acting – e.g., calcium dihydroxide, Ca(OH)2 (CH) – would be advantageous. Methods A new rat model of the animal's tibial metaphysis was developed. In the left proximal tibiae of 36 male Wistar rats, titanium screws were implanted. The screws were coated with hydroxyapatite (HA; 12 animals: group I), low-dosed HA silver (HA-Ag; 12 animals: group II) and CH (12 animals: group III). After 6 weeks, all rats were sacrificed. The implants were evaluated for morphological changes on their surfaces, by light microscopy, scanning electron microscopy and energy-dispersive X-ray spectroscopy; for osteointegration, by measurement of resistance to removal; and for bacterial colonization, by quantitative culture analysis. Additionally, the tibial bone was investigated histologically for signs of osteomyelitis and sonicated to detect bacterial loads. Results (i) No microbiological or histological signs of infection could be determined on any of the screws or the surrounding bone. (ii) The bone-implant interface analysis revealed extensive bone formation and direct bone-implant contact on all HA, HA-Ag and HA-CH coated screws. (iii) HA and HA-Ag were partially, and CH was fully, degraded on the screw coating, allowing host bone to osteointegrate.

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials,General Medicine,Bioengineering,Biophysics

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