Biological evaluation of silver nanoparticles incorporated into chitosan-based membranes
Nanomedicine, 2017•Taylor & Francis
Aim: To evaluate the antibacterial potential and biological performance of silver
nanoparticles in chitosan-based membranes. Materials & methods: Electrospun
chitosan/poly (ethylene oxide) membranes with different amounts of silver nanoparticles
were evaluated for antibacterial properties and cytotoxicity in vitro and for tissue response in
a rabbit subcutaneous model. Results: The nanoparticles displayed dose-dependent
antibacterial properties against Porphyromonas gingivalis and Fusobacterium nucleatum …
nanoparticles in chitosan-based membranes. Materials & methods: Electrospun
chitosan/poly (ethylene oxide) membranes with different amounts of silver nanoparticles
were evaluated for antibacterial properties and cytotoxicity in vitro and for tissue response in
a rabbit subcutaneous model. Results: The nanoparticles displayed dose-dependent
antibacterial properties against Porphyromonas gingivalis and Fusobacterium nucleatum …
Aim
To evaluate the antibacterial potential and biological performance of silver nanoparticles in chitosan-based membranes. Materials & methods
Electrospun chitosan/poly(ethylene oxide) membranes with different amounts of silver nanoparticles were evaluated for antibacterial properties and cytotoxicity in vitro and for tissue response in a rabbit subcutaneous model. Results
The nanoparticles displayed dose-dependent antibacterial properties against Porphyromonas gingivalis and Fusobacterium nucleatum, without showing noticeable cytotoxicity. The membranes with silver nanoparticles evoked a similar inflammatory response compared with the membranes without silver nanoparticles. Conclusion
The antibacterial effect, combined with the findings on cyto- and biocompatibility warrants further investigation to the usefulness of chitosan/poly(ethylene oxide) membranes with silver nanoparticles, for clinical applications like guided tissue regeneration.Taylor & Francis Online
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