Tubular scaffolds (internal diameter approximately 3 mm and wall thickness approximately 0.8 mm) with a porosity of approximately 83% and an average pore size of 116 mu m were prepared from flexible poly(trimethylene carbonate) (PTMC) polymer by dip-coating and particulate leaching methods. PTMC is a flexible and biocompatible polymer that crosslinks upon irradiation; porous network structures were obtained by irradiating the specimens in vacuum at 25 kGy before leaching soluble salt particles. To assess the suitability of these scaffolds in dynamic cell culturing for cardiovascular tissue engineering, the scaffolds were coated with a thin (0.1 to 0.2 mm) non-porous PTMC layer and its performance was evaluated in a closed pulsatile flow sys...
Vascular grafts with an inner diameter less than 6 mm are urgently needed due to the increasing prev...
Porous, tubular, flexible, and elastic poly(trimethylene carbonate) (PTMC) scaffolds (length 8 cm an...
Using an electro-spinning technique or a dip-coating method, porous poly(trimethylene carbonate) (PT...
Tubular scaffolds (internal diameter approximately 3 mm and wall thickness approximately 0.8 mm) wit...
Tubular scaffolds (internal diameter approximately 3 mm and wall thickness approximately 0.8 mm) wit...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
For tissue engineering of small-diameter blood vessels, biodegradable, flexible and elastic porous t...
Vascular grafts with an inner diameter less than 6mm are urgently needed due to the increasing preva...
Vascular grafts with an inner diameter less than 6mm are urgently needed due to the increasing preva...
Vascular grafts with an inner diameter less than 6 mm are urgently needed due to the increasing prev...
Vascular grafts with an inner diameter less than 6 mm are urgently needed due to the increasing prev...
Porous, tubular, flexible, and elastic poly(trimethylene carbonate) (PTMC) scaffolds (length 8 cm an...
Using an electro-spinning technique or a dip-coating method, porous poly(trimethylene carbonate) (PT...
Tubular scaffolds (internal diameter approximately 3 mm and wall thickness approximately 0.8 mm) wit...
Tubular scaffolds (internal diameter approximately 3 mm and wall thickness approximately 0.8 mm) wit...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
For tissue engineering of small-diameter blood vessels, biodegradable, flexible and elastic porous t...
Vascular grafts with an inner diameter less than 6mm are urgently needed due to the increasing preva...
Vascular grafts with an inner diameter less than 6mm are urgently needed due to the increasing preva...
Vascular grafts with an inner diameter less than 6 mm are urgently needed due to the increasing prev...
Vascular grafts with an inner diameter less than 6 mm are urgently needed due to the increasing prev...
Porous, tubular, flexible, and elastic poly(trimethylene carbonate) (PTMC) scaffolds (length 8 cm an...
Using an electro-spinning technique or a dip-coating method, porous poly(trimethylene carbonate) (PT...