The current study examines the enzymatic decomposition of urea into carbon dioxide and ammonia as a means to increase the pH during biomimetic deposition of calcium phospate (CaP) onto implant surfaces. The kinetics of the enzymatically induced pH increase were studied by monitoring pH, calcium concentration and conductivity of the aqueous solutions as a function of time, urease concentration and initial concentrations of calcium and phosphate ions. Cryogenic transmission electron microscopy was used to study the process of homogeneous CaP precipitation in solution, whereas CaP deposition on conventional acid-etched titanium and micropatterned polystyrene (PS) surfaces was studied using scanning electron microscopy. The data presented in th...
Biomineralization is the process by which organisms produce hard inorganic matter from soft tissues ...
The weak fixation of biomaterials within the bone structure is one of the major reasons of implants ...
Precalcification of Polyactive(R) 1000/70/30 with a biomimetic calcium phosphate coating is expected...
The current study examines the enzymatic decomposition of urea into carbon dioxide and ammonia as a ...
The current study has focused on enzymatic decomposition of urea into carbon dioxide and ammonia as ...
The current study examines the enzymatic decomposition of urea into carbon dioxide and ammonia as a ...
International audienceCarboxylated, sulfated and/or phosphorylated surfaces are admitted as potentia...
The biomimetic coating technique can be used to deposit layers of calcium phosphate (CaP) on medical...
The biomimetic coating technique can be used to deposit layers of calcium phosphate (CaP) on medical...
Ti6Al4V as a common implant material features good mechanical properties and corrosion resistance. H...
The biomimetic approach for coating metal implants allows the deposition of new calcium phosphate (C...
The behavior of cells responsible for bone formation, osseointegration, and bone bonding in vivo are...
The aim of the present study was to compare the nucleating behaviour on four types of bioactive surf...
Plasma-sprayed hydroxylapatite coatings on metallic prosthesis significantly increased the success r...
Plasma-sprayed hydroxylapatite coatings on metallic prosthesis significantly increased the success ...
Biomineralization is the process by which organisms produce hard inorganic matter from soft tissues ...
The weak fixation of biomaterials within the bone structure is one of the major reasons of implants ...
Precalcification of Polyactive(R) 1000/70/30 with a biomimetic calcium phosphate coating is expected...
The current study examines the enzymatic decomposition of urea into carbon dioxide and ammonia as a ...
The current study has focused on enzymatic decomposition of urea into carbon dioxide and ammonia as ...
The current study examines the enzymatic decomposition of urea into carbon dioxide and ammonia as a ...
International audienceCarboxylated, sulfated and/or phosphorylated surfaces are admitted as potentia...
The biomimetic coating technique can be used to deposit layers of calcium phosphate (CaP) on medical...
The biomimetic coating technique can be used to deposit layers of calcium phosphate (CaP) on medical...
Ti6Al4V as a common implant material features good mechanical properties and corrosion resistance. H...
The biomimetic approach for coating metal implants allows the deposition of new calcium phosphate (C...
The behavior of cells responsible for bone formation, osseointegration, and bone bonding in vivo are...
The aim of the present study was to compare the nucleating behaviour on four types of bioactive surf...
Plasma-sprayed hydroxylapatite coatings on metallic prosthesis significantly increased the success r...
Plasma-sprayed hydroxylapatite coatings on metallic prosthesis significantly increased the success ...
Biomineralization is the process by which organisms produce hard inorganic matter from soft tissues ...
The weak fixation of biomaterials within the bone structure is one of the major reasons of implants ...
Precalcification of Polyactive(R) 1000/70/30 with a biomimetic calcium phosphate coating is expected...