Does Implant Coating With Antibacterial-Loaded Hydrogel Reduce Bacterial Colonization and Biofilm Formation in Vitro?
Снижает ли покрытие имплантата гидрогелем с антибактериальными препаратами бактериальную колонизацию и образование биоплёнки in vitro?
2014-03-12
SCID: 54.1/be9aq6a8
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antibacterial-loaded hydrogelbacterial colonizationbiofilm formationimplant coatingpress-fit insertion
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Abstract (AI)
BACKGROUND: Implant-related infections represent one of the most severe complications in orthopaedics. A fast-resorbable, antibacterial-loaded hydrogel may reduce or prevent bacterial colonization and biofilm formation of implanted biomaterials. QUESTIONS/PURPOSES: We asked: (1) Is a fast-resorbable hydrogel able to deliver antibacterial compounds in vitro? (2) Can a hydrogel (alone or antibacterial-loaded) coating on implants reduce bacterial colonization? And (3) is intraoperative coating feasible and resistant to press-fit implant insertion? METHODS: We tested the ability of Disposable Antibacterial Coating (DAC) hydrogel (Novagenit Srl, Mezzolombardo, Italy) to deliver antibacterial agents using spectrophotometry and a microbiologic assay. Antibacterial and antibiofilm activity were determined by broth microdilution and a crystal violet assay, respectively. Coating resistance to press-fit insertion was tested in rabbit tibias and human femurs. RESULTS: Complete release of all tested antibacterial compounds was observed in less than 96 hours. Bactericidal and antibiofilm effect of DAC hydrogel in combination with various antibacterials was shown in vitro. Approximately 80% of the hydrogel coating was retrieved on the implant after press-fit insertion. CONCLUSIONS: Implant coating with an antibacterial-loaded hydrogel reduces bacterial colonization and biofilm formation in vitro. CLINICAL RELEVANCE: A fast-resorbable, antibacterial-loaded hydrogel coating may help prevent implant-related infections in orthopaedics. However, further validation in animal models and properly controlled human studies is required.
Key Findings
1
Antibacterial-loaded DAC hydrogel demonstrated bactericidal and antibiofilm activity against tested bacteria in vitro.
2
Approximately 80% of the hydrogel coating remained on implants after press-fit insertion in rabbit tibias and human femurs, supporting intraoperative feasibility.
3
Clinical effectiveness remains unvalidated because further animal studies and controlled human trials are required.
4
DAC fast-resorbable hydrogel released all tested antibacterial compounds completely within 96 hours in vitro.
5
Hydrogel coating alone or loaded with antibacterials reduced bacterial colonization and biofilm formation on implant materials.
Research Object
orthopaedic implants coated with fast-resorbable antibacterial-loaded DAC hydrogel
Research Subject
in vitro antibacterial and antibiofilm performance of the coating, including reduction of bacterial colonization and resistance to press-fit insertion
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2014-03-12
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