Research on incorporation of both growth factors and silver (Ag) into hydroxyapatite (HA) coatings on metallic implant surfaces for enhancing osteoinductivity and antibacterial properties is a challenging work. Generally, Ag nanoparticles are easy to agglomerate and lead to a large increase in local Ag concentration, which could potentially affect cell activity. On the other hand, growth factors immobilization requires mild processing conditions so as to maintain their activities. In this study, bone morphology protein-2 (BMP-2) and Ag nanoparticle contained HA coatings were prepared on Ti surfaces by combining electrochemical deposition (ED) of Ag and electrostatic immobilization of BMP-2. During the ED process, chitosan (CS) was selected ...
In the present study, biological hydroxyapatite (HA) was obtained from bovine bones through a therma...
Hydroxyapatite coatings are widely employed to enhance the osseointegration ability and bioactivity ...
Silver doped hydroxyapatite (HAp/Ag) is a promising biomaterial for hard tissue regeneration due to ...
The present work focuses on the idea to prevent and/or inhibit the colonization of implant surfaces ...
Thanks to mechanical properties similar human bones, metallic materials represent the best choice fo...
During the last years biomaterials have been largely investigated in order to perform and improve bi...
Implant-associated infections (IAI) are often recurrent, expensive to treat, and associated with hig...
During the implantation surgery, an infection associated with the biofilm formation may occur. Both ...
Microbial colonization and biofilm formation on implanted devices represent an important complicati...
Porous calcium phosphate microspheres have been modified to contain nanoparticles of silver to provi...
With the rise of ageing population, the need to restore the function of degenerative bone greatly dr...
In the last decades, the scientific community has turned on great interest towards the development o...
Bisphenol A glycidylmethacrylate (BisGMA)/triethyleneglycol dimethacrylate (TEGDMA) thermosets are b...
Silver doped calcium phosphate biomaterials, such as silver doped hydroxyapatite (Hap/Ag) offer a gr...
Biocompatible antimicrobial coatings may enhance the function of many orthopedic implants by combati...
In the present study, biological hydroxyapatite (HA) was obtained from bovine bones through a therma...
Hydroxyapatite coatings are widely employed to enhance the osseointegration ability and bioactivity ...
Silver doped hydroxyapatite (HAp/Ag) is a promising biomaterial for hard tissue regeneration due to ...
The present work focuses on the idea to prevent and/or inhibit the colonization of implant surfaces ...
Thanks to mechanical properties similar human bones, metallic materials represent the best choice fo...
During the last years biomaterials have been largely investigated in order to perform and improve bi...
Implant-associated infections (IAI) are often recurrent, expensive to treat, and associated with hig...
During the implantation surgery, an infection associated with the biofilm formation may occur. Both ...
Microbial colonization and biofilm formation on implanted devices represent an important complicati...
Porous calcium phosphate microspheres have been modified to contain nanoparticles of silver to provi...
With the rise of ageing population, the need to restore the function of degenerative bone greatly dr...
In the last decades, the scientific community has turned on great interest towards the development o...
Bisphenol A glycidylmethacrylate (BisGMA)/triethyleneglycol dimethacrylate (TEGDMA) thermosets are b...
Silver doped calcium phosphate biomaterials, such as silver doped hydroxyapatite (Hap/Ag) offer a gr...
Biocompatible antimicrobial coatings may enhance the function of many orthopedic implants by combati...
In the present study, biological hydroxyapatite (HA) was obtained from bovine bones through a therma...
Hydroxyapatite coatings are widely employed to enhance the osseointegration ability and bioactivity ...
Silver doped hydroxyapatite (HAp/Ag) is a promising biomaterial for hard tissue regeneration due to ...