Objectives: To demonstrate that titanium implant surfaces as little as 4 weeks from production are contaminated by atmospheric hydrocarbons. This phenomenon, also known as biological ageing can be reversed by UVC irradiation technically known as photofunctionalization. To propose a new model from our experimental evidence to explain how the changes in chemical structure of the surface will affect the adsorption of amino acids on the titanium surface enhancing osteointegration. Methods: In our study XPS and AES were used to analyze the effects of UVC irradiation (photofunctionalization) in reversing biological ageing of titanium. SEM was used to analyze any possible effects on the topography of the surface. Results: UVC irradiation was ...
The osseointegration capacity of implant surfaces deteriorates over time. However, the treatment of ...
This work has been carried out as a collaboration between Chalmers University of Technology and Nobe...
Organic contaminants significantly limit the bioactivity of titanium implants, resulting in the degr...
Objectives: To demonstrate that titanium implant surfaces as little as 4 weeks from production are ...
Although there are several studies of the ultraviolet (UV) light-mediated photofunctionalization of ...
Although there are several studies of the ultraviolet (UV) light-mediated photofunctionalization of ...
Fuminori Iwasa1, Naoki Tsukimura1, Yoshihiko Sugita1, Rajita Kodali Kanuru1, Katsutoshi Kubo1, Hafiz...
It is a significant challenge for a titanium implant, which is a bio-inert material, to recruit oste...
This study examined the effect of photofunctionalization on bioactivity and osteoconductivity of tit...
OBJECTIVE: We evaluated whether the biological activity of the surface of titanium, when stored in a...
Photofunctionalization mediated by ultraviolet (UV) rays changes the physico-chemical characteristic...
We evaluated whether the biological activity of the surface of titanium, when stored in an aqueous s...
Titanium undergoes biological aging, represented by increased hydrophobicity and surface accumulatio...
The objective of this study was to evaluate the effect of ultraviolet light treatment, known as phot...
Titanium undergoes biological aging, represented by increased hydrophobicity and surface accumulatio...
The osseointegration capacity of implant surfaces deteriorates over time. However, the treatment of ...
This work has been carried out as a collaboration between Chalmers University of Technology and Nobe...
Organic contaminants significantly limit the bioactivity of titanium implants, resulting in the degr...
Objectives: To demonstrate that titanium implant surfaces as little as 4 weeks from production are ...
Although there are several studies of the ultraviolet (UV) light-mediated photofunctionalization of ...
Although there are several studies of the ultraviolet (UV) light-mediated photofunctionalization of ...
Fuminori Iwasa1, Naoki Tsukimura1, Yoshihiko Sugita1, Rajita Kodali Kanuru1, Katsutoshi Kubo1, Hafiz...
It is a significant challenge for a titanium implant, which is a bio-inert material, to recruit oste...
This study examined the effect of photofunctionalization on bioactivity and osteoconductivity of tit...
OBJECTIVE: We evaluated whether the biological activity of the surface of titanium, when stored in a...
Photofunctionalization mediated by ultraviolet (UV) rays changes the physico-chemical characteristic...
We evaluated whether the biological activity of the surface of titanium, when stored in an aqueous s...
Titanium undergoes biological aging, represented by increased hydrophobicity and surface accumulatio...
The objective of this study was to evaluate the effect of ultraviolet light treatment, known as phot...
Titanium undergoes biological aging, represented by increased hydrophobicity and surface accumulatio...
The osseointegration capacity of implant surfaces deteriorates over time. However, the treatment of ...
This work has been carried out as a collaboration between Chalmers University of Technology and Nobe...
Organic contaminants significantly limit the bioactivity of titanium implants, resulting in the degr...