Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC, were developed as scaffolds for tissue engineering of small-diameter blood vessels. High-molecular-weight PTMC (M(n) = 4.37 x 10(5)) was cross-linked by gamma-irradiation in an inert nitrogen atmosphere. The resulting networks (50-70% gel content) were elastic and creep resistant. The PTMC materials were highly biocompatible as determined by cell adhesion and proliferation studies using various relevant cell types (human umbilical vein endothelial cells (HUVECs), smooth muscle cells (SMCs) and mesenchymal stem cells (MSCs)). Dimensionally stable tubular scaffolds with an interconnected pore network were prepared by particulate leaching. Diff...
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...
Using an electro-spinning technique or a dip-coating method, porous poly(trimethylene carbonate) (PT...
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 6 mm are urgently needed due to the increasing prev...
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...
Porous, tubular, flexible, and elastic poly(trimethylene carbonate) (PTMC) scaffolds (length 8 cm an...
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...
Tubular scaffolds (internal diameter approximately 3 mm and wall thickness approximately 0.8 mm) wit...
Using an electro-spinning technique or a dip-coating method, porous poly(trimethylene carbonate) (PT...
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 6 mm are urgently needed due to the increasing prev...
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...
Porous, tubular, flexible, and elastic poly(trimethylene carbonate) (PTMC) scaffolds (length 8 cm an...
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...
Tubular scaffolds (internal diameter approximately 3 mm and wall thickness approximately 0.8 mm) wit...
Using an electro-spinning technique or a dip-coating method, porous poly(trimethylene carbonate) (PT...