Effective preventive measures against implant-associated infection (IAI) are desperately needed. Therefore, the development of self-defending implants with intrinsic antibacterial properties has gained significant momentum. Biomaterials biofunctionalized with silver (Ag) have resulted in effective antibacterial biomaterials, yet regularly induce cytotoxicity. In this study, the use of both Ag and copper (Cu) nanoparticles (NPs) on TiO2 surfaces was investigated to generate antibacterial and osteoconductive biomaterials. Hence, additively manufactured Ti-6Al-4V volume-porous implants were biofunctionalized with plasma electrolytic oxidation (PEO) through the incorporation of varying ratios of Ag and/or Cu NPs in the TiO2 layer covering the i...
Background: Joint arthroplasty has improved the quality of life of patients worldwide, but infection...
Background: Joint arthroplasty has improved the quality of life of patients worldwide, but infection...
A common problem with implants is that bacteria can form biofilms on their surfaces, which can lead ...
Bacterial infection is one of the most severe complications of titanium based implants which leads t...
Background: The increase in orthopaedic implants, as a result of an ageing population, is accompanie...
Implant-associated infections are highly challenging to treat, particularly with the emergence of mu...
Implant-associated infections are highly challenging to treat, particularly with the emergence of mu...
Orthopedic implants used for total joint replacements are under a high clinical demand. Although mos...
The two major problems of titanium alloy surface of bone/dental implants were the lack of native tis...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
The therapeutic applications of silver nanoparticles (AgNPs) against biomedical device-associated in...
Despite preventive measures in hospitals through the control of environmental and personnel contamin...
Total hip arthroplasty (THA) is the most effective and safest method for treating severe degenerativ...
Abstract Implant-associated infections are dangerous complications and may cause dramatic illness wi...
Nanoparticles (NPs) have high multifunctional potential to simultaneously enhance implant osseointeg...
Background: Joint arthroplasty has improved the quality of life of patients worldwide, but infection...
Background: Joint arthroplasty has improved the quality of life of patients worldwide, but infection...
A common problem with implants is that bacteria can form biofilms on their surfaces, which can lead ...
Bacterial infection is one of the most severe complications of titanium based implants which leads t...
Background: The increase in orthopaedic implants, as a result of an ageing population, is accompanie...
Implant-associated infections are highly challenging to treat, particularly with the emergence of mu...
Implant-associated infections are highly challenging to treat, particularly with the emergence of mu...
Orthopedic implants used for total joint replacements are under a high clinical demand. Although mos...
The two major problems of titanium alloy surface of bone/dental implants were the lack of native tis...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
The therapeutic applications of silver nanoparticles (AgNPs) against biomedical device-associated in...
Despite preventive measures in hospitals through the control of environmental and personnel contamin...
Total hip arthroplasty (THA) is the most effective and safest method for treating severe degenerativ...
Abstract Implant-associated infections are dangerous complications and may cause dramatic illness wi...
Nanoparticles (NPs) have high multifunctional potential to simultaneously enhance implant osseointeg...
Background: Joint arthroplasty has improved the quality of life of patients worldwide, but infection...
Background: Joint arthroplasty has improved the quality of life of patients worldwide, but infection...
A common problem with implants is that bacteria can form biofilms on their surfaces, which can lead ...