Gelatin-modified poly(ethylene terephthalate) (PET) surfaces have been previously realized via an intermediate dopamine coating procedure that resulted in surfaces with superior haemocompatibility compared to unfunctionalized PET. The present study addresses the biocompatibility assessment of these coated PET surfaces. In this context, the stability of the gelatin coating upon exposure to physiological conditions and its cell-interactive properties were investigated. The proposed gelatindopamine-PET surfaces showed an increased protein coating stability up to 24 days and promoted the attachment and spreading of both endothelial cells (ECs) and smooth muscle cells (SMCs). In parallel, physisorbed gelatin coatings exhibited similar cell-inter...
In this study, polyurethane urea was surface-modified to elevate cell recognition through immobiliza...
Failures of small internal diameter vascular grafts have been caused by the lack of a stable endothe...
665-674Poly(dimethylsiloxane) (PDMS) platforms can be molded into desirable shapes and patterns, the...
Gelatin-modified poly(ethylene terephthalate) (PET) surfaces have been previously realized via an in...
Electrospun PET (ePET) is a promising material for small caliber vascular graft applications owing t...
In vascular tissue engineering, great attention is paid to the immobilization of biomolecules onto s...
A variety of surface modification techniques have been proposed to improve the cell-biomaterial inte...
In the present work, we studied the immobilisation of the biopolymer gelatin onto the surface of thr...
Despite its widespread application in the fields of ophthalmology, orthopedics, and dentistry and th...
Conducting polymers (CPs) are increasingly being used to interface with cells for applications in bo...
Unmodified gelatin (uG) is widely used as a coating material in cell culture for improving surface p...
The current in vitro cell culture technologies of utilizing microfluidic devices has become more c...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
Soft-tissue integration of medical implants is important to prevent bacterial infection and implant ...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In this study, polyurethane urea was surface-modified to elevate cell recognition through immobiliza...
Failures of small internal diameter vascular grafts have been caused by the lack of a stable endothe...
665-674Poly(dimethylsiloxane) (PDMS) platforms can be molded into desirable shapes and patterns, the...
Gelatin-modified poly(ethylene terephthalate) (PET) surfaces have been previously realized via an in...
Electrospun PET (ePET) is a promising material for small caliber vascular graft applications owing t...
In vascular tissue engineering, great attention is paid to the immobilization of biomolecules onto s...
A variety of surface modification techniques have been proposed to improve the cell-biomaterial inte...
In the present work, we studied the immobilisation of the biopolymer gelatin onto the surface of thr...
Despite its widespread application in the fields of ophthalmology, orthopedics, and dentistry and th...
Conducting polymers (CPs) are increasingly being used to interface with cells for applications in bo...
Unmodified gelatin (uG) is widely used as a coating material in cell culture for improving surface p...
The current in vitro cell culture technologies of utilizing microfluidic devices has become more c...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
Soft-tissue integration of medical implants is important to prevent bacterial infection and implant ...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In this study, polyurethane urea was surface-modified to elevate cell recognition through immobiliza...
Failures of small internal diameter vascular grafts have been caused by the lack of a stable endothe...
665-674Poly(dimethylsiloxane) (PDMS) platforms can be molded into desirable shapes and patterns, the...