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The effect of silver or gallium doped titanium against the multidrug resistant Acinetobacter baumannii

Articolo
Data di Pubblicazione:
2016
Abstract:
Implant-related infection of biomaterials is one of the main causes of arthroplasty and osteosynthesis failure. Bacteria, such as the rapidly-emerging Multi Drug Resistant (MDR) pathogen Acinetobacter Baumannii, initiate the infection by adhering to biomaterials and forming a biofilm. Since the implant surface plays a crucial role in early bacterial adhesion phases, titanium was electrochemically modified by an Anodic Spark Deposition (ASD) treatment, developed previously and thought to provide osseo-integrative properties. In this study, the treatment was modified to insert gallium or silver onto the titanium surface, to provide antibacterial properties. The material was characterized morphologically, chemically, and mechanically; biological properties were investigated by direct cytocompatibility assay, Alkaline Phosphatase (ALP) activity, Scanning Electron Microscopy (SEM), and Immunofluorescent (IF) analysis; antibacterial activity was determined by counting Colony Forming Units, and viability assay. The various ASD-treated surfaces showed similar morphology, micrometric pore size, and uniform pore distribution. Of the treatments studied, gallium-doped specimens showed the best ALP synthesis and antibacterial properties. This study demonstrates the possibility of successfully doping the surface of titanium with gallium or silver, using the ASD technique; this approach can provide antibacterial properties and maintain high osseo-integrative potential.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Acinetobacter baumannii; Anodic spark deposition; Biofilm; Gallium; Silver; Titanium; Acinetobacter Infections; Acinetobacter baumannii; Anti-Bacterial Agents; Bacterial Adhesion; Biofilms; Cell Line; Coated Materials, Biocompatible; Drug Resistance, Multiple; Gallium; Humans; Prostheses and Implants; Silver; Surface Properties; Titanium; Bioengineering; Ceramics and Composites; Biophysics; Biomaterials; Mechanics of Materials
Elenco autori:
Cochis, A.; Azzimonti, B.; Della Valle, C.; De Giglio, E.; Bloise, Nora; Visai, Livia; Cometa, S.; Rimondini, L.; Chiesa, R.
Autori di Ateneo:
BLOISE NORA
VISAI LIVIA
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1178132
Pubblicato in:
BIOMATERIALS
Journal
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URL

http://www.journals.elsevier.com/biomaterials/
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