Titanium is widely used in bone prostheses due to its excellent biocompatibility and osseointegration capacity. To understand the effect of sandblasted acid-etched (SAE) Ti implants on the biological responses of human osteoblast (HOb), their proteomic profiles were analyzed using nLC-MS/MS. The cells were cultured with the implant materials, and 2544 distinct proteins were detected in samples taken after 1, 3, and 7 days. Comparative analyses of proteomic data were performed using Perseus software. The expression of proteins related to EIF2, mTOR, insulin-secretion and IGF pathways showed marked differences in cells grown with SAE-Ti in comparison with cells cultured without Ti. Moreover, the proteomic profiles obtained with SAE-Ti were co...
Orthopedic implant failure due to aseptic loosening and mechanical instability remains a major probl...
Several features of the implant surface, such as composition, topography, roughness, and energy, pla...
In recent years, synthetic calcium phosphate (CaP) ceramics have emerged as an alternative to bone g...
Understanding of the interaction between human MG63 osteoblast-like cells and surfaces is necessary ...
The prime objectives in the development of biomaterials for dental applications are to improve the q...
Titanium dental implants are commonly used due to their biocompatibility and biochemical properties;...
Nanostructured titanium prepared by the equal-channel angular pressing route (ECAPed Ti) has shown g...
The topography of titanium implants has been identified as an important factor affecting the osseoin...
To improve implant biocompatibility, we developed a simple cost-effective thermal surface treatment ...
Titanium implants are frequently applied to the bone in orthopedic and trauma surgery. Although thes...
The surface topography of titanium dental implants has a great influence on osseointegration. In thi...
It is now generally accepted that the response to a particular signal, such as the surgical trauma f...
An in vitro mineralizing cell-implant system was developed to study osteoblast attachment, secretion...
Background: It is now generally accepted that the response to a particular signal, such as the surgi...
Titanium and titanium alloys are widely used as implant materials due to their excellent biocompatib...
Orthopedic implant failure due to aseptic loosening and mechanical instability remains a major probl...
Several features of the implant surface, such as composition, topography, roughness, and energy, pla...
In recent years, synthetic calcium phosphate (CaP) ceramics have emerged as an alternative to bone g...
Understanding of the interaction between human MG63 osteoblast-like cells and surfaces is necessary ...
The prime objectives in the development of biomaterials for dental applications are to improve the q...
Titanium dental implants are commonly used due to their biocompatibility and biochemical properties;...
Nanostructured titanium prepared by the equal-channel angular pressing route (ECAPed Ti) has shown g...
The topography of titanium implants has been identified as an important factor affecting the osseoin...
To improve implant biocompatibility, we developed a simple cost-effective thermal surface treatment ...
Titanium implants are frequently applied to the bone in orthopedic and trauma surgery. Although thes...
The surface topography of titanium dental implants has a great influence on osseointegration. In thi...
It is now generally accepted that the response to a particular signal, such as the surgical trauma f...
An in vitro mineralizing cell-implant system was developed to study osteoblast attachment, secretion...
Background: It is now generally accepted that the response to a particular signal, such as the surgi...
Titanium and titanium alloys are widely used as implant materials due to their excellent biocompatib...
Orthopedic implant failure due to aseptic loosening and mechanical instability remains a major probl...
Several features of the implant surface, such as composition, topography, roughness, and energy, pla...
In recent years, synthetic calcium phosphate (CaP) ceramics have emerged as an alternative to bone g...