© 2018 Lu et al. Background: Modified titanium (Ti) substrates with titanium dioxide (TiO2) nanotubes have broad usage as implant surface treatments and as drug delivery systems. Methods: To improve drug-loading capacity and accelerate bone integration with titanium, in this study, we hydrogenated anodized titanium dioxide nanotubes (TNTs) by a thermal treatment. Three groups were examined, namely: hydrogenated TNTs (H2-TNTs, test), unmodified TNTs (air-TNTs, control), and Ti substrates (Ti, control). Results: Our results showed that oxygen vacancies were present in all the nanotubes. The quantity of -OH groups greatly increased after hydrogenation. Furthermore, the protein adsorption and loading capacity of the H2-TNTs were considerably en...
Here, we report on the development of advanced biopolymer-coated drug-releasing implants based on ti...
Titanium implants can fail due to inappropriate biomechanics at the bone-implant interface that lead...
The bio-inertness of titanium (Ti) and accompanying severe inflammation can extremely inhibit the co...
Ran Lu,1–3,* Caiyun Wang,1–3,* Xin Wang,1 Yuji Wang,3 Na Wang,1 Joshua Chou,4 Tao Li,1,2...
Although titanium (Ti) alloys have been widely used as implant materials, the bioinertness of pristi...
Titanium dioxide nanotubes (TNTs) have drawn wide attention and been extensively applied in the fiel...
The lack of osseointegration and implant-related infections are two major complications leading to f...
The antibacterial properties of titanium make it useful for clinical applications. Hydroxyapatite (H...
Titanium has been used for dental and orthopaedic implants since decades due to its suitable surface...
The lack of osseointegration and implant-related infections are two major complications leading to f...
A release controlled and localized carrier is important for bone morphogenetic protein delivery in o...
The titanium dioxide (TiO2) nanotube surface enables significantly accelerated osteoblast adhesion a...
Objective To investigate the effect of pure titanium surface of large diameter TiO2 nanotubes modifi...
Titanium and titanium alloys exhibit a unique combination of strength and biocompatibility, which en...
Due to their superior mechanical and chemical properties, titanium (Ti) and its alloys have been wid...
Here, we report on the development of advanced biopolymer-coated drug-releasing implants based on ti...
Titanium implants can fail due to inappropriate biomechanics at the bone-implant interface that lead...
The bio-inertness of titanium (Ti) and accompanying severe inflammation can extremely inhibit the co...
Ran Lu,1–3,* Caiyun Wang,1–3,* Xin Wang,1 Yuji Wang,3 Na Wang,1 Joshua Chou,4 Tao Li,1,2...
Although titanium (Ti) alloys have been widely used as implant materials, the bioinertness of pristi...
Titanium dioxide nanotubes (TNTs) have drawn wide attention and been extensively applied in the fiel...
The lack of osseointegration and implant-related infections are two major complications leading to f...
The antibacterial properties of titanium make it useful for clinical applications. Hydroxyapatite (H...
Titanium has been used for dental and orthopaedic implants since decades due to its suitable surface...
The lack of osseointegration and implant-related infections are two major complications leading to f...
A release controlled and localized carrier is important for bone morphogenetic protein delivery in o...
The titanium dioxide (TiO2) nanotube surface enables significantly accelerated osteoblast adhesion a...
Objective To investigate the effect of pure titanium surface of large diameter TiO2 nanotubes modifi...
Titanium and titanium alloys exhibit a unique combination of strength and biocompatibility, which en...
Due to their superior mechanical and chemical properties, titanium (Ti) and its alloys have been wid...
Here, we report on the development of advanced biopolymer-coated drug-releasing implants based on ti...
Titanium implants can fail due to inappropriate biomechanics at the bone-implant interface that lead...
The bio-inertness of titanium (Ti) and accompanying severe inflammation can extremely inhibit the co...