Successful osseointegration of orthopaedic and orthodontic implants is dependent on a competition between osteogenesis and bacterial contamination on the implant–tissue interface. Previously, by taking advantage of the highly interactive capabilities of silver nanoparticles (AgNPs), we effectively introduced an antimicrobial effect to metal implant materials using an AgNP/poly(dl-lactic-<i>co</i>-glycolic acid) (PLGA) coating. Although electrical forces have been shown to promote osteogenesis, creating practical materials and devices capable of harnessing these forces to induce bone regeneration remains challenging. Here, we applied galvanic reduction–oxidation (redox) principles to engineer a nanoscale galvanic redox system between AgNPs ...
Implant associated infections are one of the main reasons for implant failure in total joint arthrop...
Microbial colonization and biofilm formation on implanted devices represent an important complicati...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
Successful osseointegration of orthopaedic and orthodontic implants is dependent on a competition be...
Successful osseointegration of orthopaedic and orthodontic implants is dependent on a competition be...
Implant-associated bacterial infections are one of the most serious complications in orthopedic surg...
Nanostructured metals are a promising class of biomaterials for application in orthopedics to improv...
Nanostructured metals are a promising class of biomaterials for application in orthopedics to improv...
The issue of prosthetic infection leading to implant failure due to the formation of bacterial biofi...
Nanoparticles (NPs) have high multifunctional potential to simultaneously enhance implant osseointeg...
In this work, composite coatings of chitosan and silver nanoparticles were presented as an antibacte...
Orthopedic implants used for total joint replacements are under a high clinical demand. Although mos...
Plasma electrolytic oxidation (PEO) can provide an ideal surface for osteogenic cell attachment and ...
In this work, composite coatings of chitosan and silver nanoparticles were presented as an antibacte...
Dental and orthopaedic implants are currently the solutions of choice for teeth and joint replacemen...
Implant associated infections are one of the main reasons for implant failure in total joint arthrop...
Microbial colonization and biofilm formation on implanted devices represent an important complicati...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
Successful osseointegration of orthopaedic and orthodontic implants is dependent on a competition be...
Successful osseointegration of orthopaedic and orthodontic implants is dependent on a competition be...
Implant-associated bacterial infections are one of the most serious complications in orthopedic surg...
Nanostructured metals are a promising class of biomaterials for application in orthopedics to improv...
Nanostructured metals are a promising class of biomaterials for application in orthopedics to improv...
The issue of prosthetic infection leading to implant failure due to the formation of bacterial biofi...
Nanoparticles (NPs) have high multifunctional potential to simultaneously enhance implant osseointeg...
In this work, composite coatings of chitosan and silver nanoparticles were presented as an antibacte...
Orthopedic implants used for total joint replacements are under a high clinical demand. Although mos...
Plasma electrolytic oxidation (PEO) can provide an ideal surface for osteogenic cell attachment and ...
In this work, composite coatings of chitosan and silver nanoparticles were presented as an antibacte...
Dental and orthopaedic implants are currently the solutions of choice for teeth and joint replacemen...
Implant associated infections are one of the main reasons for implant failure in total joint arthrop...
Microbial colonization and biofilm formation on implanted devices represent an important complicati...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...