Highly porous and interconnected scaffolds were fabricated using calcium phosphate glass (CPG) for bone tissue engineering. An avidin-biotin binding system was used to improve osteoblast-like cell adhesion to the scaffold. The scaffolds had open macro- and micro-scale pores, and continuous struts without cracks or defects. Scaffolds prepared using a mixture (amorphous and crystalline CPG) were stronger than amorphous group and crystalline group. Cell adhesion assays showed that more cells adhered, with increasing cell seeding efficiency to the avidin-adsorbed scaffolds, and that cell attachment to the highly porous scaffolds significantly differed between avidin-adsorbed scaffolds and other scaffolds. Proliferation was also significantly hi...
Tissue engineering presents an alternative approach to the repair of a damaged tissue by avoiding th...
Highly porous bioresorbable glass-ceramic scaffolds were prepared via sponge replication method by u...
Purpose: The aim of this review is to introduce a novel bone-graft material for hard-tissue regenera...
The purpose of this study was to evaluate the cell affinity of calcium phosphate glass scaffold in t...
This in vitro study was performed to evaluate the ability of two types of porous bioactive glass sca...
Because of the limitations associated with biologic and synthetic grafts, we have pursued the idea o...
Glass–ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane ...
This paper describes our recent work on the processing and evaluation of porous bioactive glass scaf...
In this study, polycaprolactone (PCL)-based composite scaffolds containing 50 wt% of 45S5 Bioglass® ...
Various scaffolds have been used in in vitro and in vivo studies as either cell free bone grafts or ...
In this study a phosphate-free glass–ceramic porous scaffold was synthesized by a three-step methodo...
A polymer foam replication technique was used to prepare porous scaffolds of 13-93 bioactive glass w...
This study examined the possibility of synthesis of biphasic calcium phosphate by sintering a mixtur...
This investigation consisted of two parts focused on bioactive glasses and scaffolds for in vitro gr...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
Tissue engineering presents an alternative approach to the repair of a damaged tissue by avoiding th...
Highly porous bioresorbable glass-ceramic scaffolds were prepared via sponge replication method by u...
Purpose: The aim of this review is to introduce a novel bone-graft material for hard-tissue regenera...
The purpose of this study was to evaluate the cell affinity of calcium phosphate glass scaffold in t...
This in vitro study was performed to evaluate the ability of two types of porous bioactive glass sca...
Because of the limitations associated with biologic and synthetic grafts, we have pursued the idea o...
Glass–ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane ...
This paper describes our recent work on the processing and evaluation of porous bioactive glass scaf...
In this study, polycaprolactone (PCL)-based composite scaffolds containing 50 wt% of 45S5 Bioglass® ...
Various scaffolds have been used in in vitro and in vivo studies as either cell free bone grafts or ...
In this study a phosphate-free glass–ceramic porous scaffold was synthesized by a three-step methodo...
A polymer foam replication technique was used to prepare porous scaffolds of 13-93 bioactive glass w...
This study examined the possibility of synthesis of biphasic calcium phosphate by sintering a mixtur...
This investigation consisted of two parts focused on bioactive glasses and scaffolds for in vitro gr...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
Tissue engineering presents an alternative approach to the repair of a damaged tissue by avoiding th...
Highly porous bioresorbable glass-ceramic scaffolds were prepared via sponge replication method by u...
Purpose: The aim of this review is to introduce a novel bone-graft material for hard-tissue regenera...