In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomaterials, polyimide and titanium, was compared. Both materials are known for their biocompatibility while lacking cell-interactive behavior. For both materials, a pre-functionalization step was required to enable gelatin immobilization. For the polyimide foils, a reactive succinimidyl ester was introduced first on the surface, followed by covalent grafting of gelatin. For the titanium material, methacrylate groups were first introduced on the Ti surface through a silanization reaction. The applied functionalities enabled the subsequent immobilization of methacrylamide modified gelatin. Both surface modified materials were characterized in depth ...
In biomaterial research, great attention has focussed on the immobilization of biomolecules with the...
Gelatin and its derivatives contain cell adhesion moieties as well as sites that enable proteolytic ...
Surface properties of scaffolds play an important role in cell adhesion and growth. Biodegradable po...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In the present work, we studied the immobilisation of the biopolymer gelatin onto the surface of thr...
The vast majority of studies in the bone tissue engineering field are focused on the surface modific...
Unmodified gelatin (uG) is widely used as a coating material in cell culture for improving surface p...
In this study, polyurethane urea was surface-modified to elevate cell recognition through immobiliza...
Titanium (Ti) and titanium alloys are among the most-commonly used metallic materials for implantati...
Tissue engineering has become a medical alternative in this society with an ever-increasing lifespan...
Xiaoyue Zhou,1,2,* Shin-Hye Park,1,* Hongli Mao,3 Takashi Isoshima,1 Yi Wang,2 Yoshihiro Ito1,3 1Na...
Gelatin-modified poly(ethylene terephthalate) (PET) surfaces have been previously realized via an in...
In the present work, two strategies were elaborated to surface-functionalize implantable polyimide s...
In biomaterial research, great attention has focussed on the immobilization of biomolecules with the...
In biomaterial research, great attention has focussed on the immobilization of biomolecules with the...
Gelatin and its derivatives contain cell adhesion moieties as well as sites that enable proteolytic ...
Surface properties of scaffolds play an important role in cell adhesion and growth. Biodegradable po...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In the present work, we studied the immobilisation of the biopolymer gelatin onto the surface of thr...
The vast majority of studies in the bone tissue engineering field are focused on the surface modific...
Unmodified gelatin (uG) is widely used as a coating material in cell culture for improving surface p...
In this study, polyurethane urea was surface-modified to elevate cell recognition through immobiliza...
Titanium (Ti) and titanium alloys are among the most-commonly used metallic materials for implantati...
Tissue engineering has become a medical alternative in this society with an ever-increasing lifespan...
Xiaoyue Zhou,1,2,* Shin-Hye Park,1,* Hongli Mao,3 Takashi Isoshima,1 Yi Wang,2 Yoshihiro Ito1,3 1Na...
Gelatin-modified poly(ethylene terephthalate) (PET) surfaces have been previously realized via an in...
In the present work, two strategies were elaborated to surface-functionalize implantable polyimide s...
In biomaterial research, great attention has focussed on the immobilization of biomolecules with the...
In biomaterial research, great attention has focussed on the immobilization of biomolecules with the...
Gelatin and its derivatives contain cell adhesion moieties as well as sites that enable proteolytic ...
Surface properties of scaffolds play an important role in cell adhesion and growth. Biodegradable po...