Implant materials require optimal biointegration, including strong and stable cell-material interactions from the early stages of implantation. Ti-based alloys with low elastic modulus are attracting a lot of interest for avoiding stress shielding, but their osseointegration potential is still very low. In this study, we report on how cell adhesion is influenced by linear RGD, cyclic RGD, and recombinant fibronectin fragment III8-10 coated on titanium versus a novel low-modulus TiNbHf alloy. The bioactive molecules were either physisorbed or covalently coupled to the substrates and their conformation on the surfaces was investigated with atomic force microscopy (AFM). The influence of the different bioactive coatings on the adhesion of rat ...
The clinical success of a dental implant requires not only an optimum osseointegration, but also the...
To be better used as medical implants in orthopedic and dental clinical applications, titanium and t...
Multi-potent adult mesenchymal stem cells (MSCs) derived from bone marrow have therapeutic potential...
Since metallic biomaterials used for bone replacement possess low bioactivity, the use of cell adhes...
We present a click chemistry-based molecular toolkit for the biofunctionalization of materials to se...
Aim: To develop a nanofiber (NF)-based biomimetic coating on titanium (Ti) that mimics the complex s...
We present a click chemistry-based molecular toolkit for the biofunctionalization of materials to se...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
b-type titanium alloys with low Young’s modulus are desirable to reduce stress shielding effect and ...
The high performance of bone implants depends on the positive response of osteoblasts to the surface...
Biomaterials to be used for the production of endosseous devices in dental, orthopedic and maxillo-f...
AbstractInteraction between the surface of implants and biological tissues is a key aspect of biomat...
Biomimetic surface modifications are regarded as promising approach to stimulate cellular behavior a...
Installing bioactivity on metallic biomaterials by mimicking the extracellular matrix (ECM) is cruci...
Installing bioactivity on metallic biomaterials by mimicking the extracellular matrix (ECM) is cruci...
The clinical success of a dental implant requires not only an optimum osseointegration, but also the...
To be better used as medical implants in orthopedic and dental clinical applications, titanium and t...
Multi-potent adult mesenchymal stem cells (MSCs) derived from bone marrow have therapeutic potential...
Since metallic biomaterials used for bone replacement possess low bioactivity, the use of cell adhes...
We present a click chemistry-based molecular toolkit for the biofunctionalization of materials to se...
Aim: To develop a nanofiber (NF)-based biomimetic coating on titanium (Ti) that mimics the complex s...
We present a click chemistry-based molecular toolkit for the biofunctionalization of materials to se...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
b-type titanium alloys with low Young’s modulus are desirable to reduce stress shielding effect and ...
The high performance of bone implants depends on the positive response of osteoblasts to the surface...
Biomaterials to be used for the production of endosseous devices in dental, orthopedic and maxillo-f...
AbstractInteraction between the surface of implants and biological tissues is a key aspect of biomat...
Biomimetic surface modifications are regarded as promising approach to stimulate cellular behavior a...
Installing bioactivity on metallic biomaterials by mimicking the extracellular matrix (ECM) is cruci...
Installing bioactivity on metallic biomaterials by mimicking the extracellular matrix (ECM) is cruci...
The clinical success of a dental implant requires not only an optimum osseointegration, but also the...
To be better used as medical implants in orthopedic and dental clinical applications, titanium and t...
Multi-potent adult mesenchymal stem cells (MSCs) derived from bone marrow have therapeutic potential...