Here, we describe a porous 3-dimensional collagen scaffold material that supports capillary formation in vitro, and promotes vascularization when implanted in vivo. Collagen scaffolds were synthesized from type I bovine collagen and have a uniform pore size of 80 μm. In vitro, scaffolds seeded with primary human microvascular endothelial cells suspended in human fibrin gel formed CD31 positive capillary-like structures with clear lumens. In vivo, after subcutaneous implantation in mice, cell-free collagen scaffolds were vascularized by host neovessels, whilst a gradual degradation of the scaffold material occurred over 8 weeks. Collagen scaffolds, impregnated with human fibrinogen gel, were implanted subcutaneously inside a chamber enclosin...
Next generation of biomaterials with enhanced functionalities requires the integration of material s...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
Here, we describe a porous 3-dimensional collagen scaffold material that supports capillary formatio...
The success of tissue engineering hinges on the rapid and sufficient vascularization of the neotissu...
A major challenge in regenerative medicine is the development of grafts that can be vascularised suc...
Porous scaffolds are limited in volume due to diffusion constraint and delay of vascular network for...
A major problem in the field of tissue engineering (TE) is graft failure due to avascular necrosis o...
The development of vascularized scaffolds remains one of the major challenges in tissue engineering,...
The wound healing process is much more complex than just the four phases of hemostasis, inflammation...
Pre-cellularised scaffolds are limited in volume due to the constraints of the time delay required f...
Modular tissue engineering is a strategy to create scalable, self-assembling, three-dimensional (3D)...
In tissue engineering, the generation and functional maintenance of dense voluminous tissues is main...
Tissue engineering has been a rapidly expanding field dedicated to regeneration of tissue. The field...
Collagen scaffolds provide a promising platform for tissue regeneration due to their ability to supp...
Next generation of biomaterials with enhanced functionalities requires the integration of material s...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
Here, we describe a porous 3-dimensional collagen scaffold material that supports capillary formatio...
The success of tissue engineering hinges on the rapid and sufficient vascularization of the neotissu...
A major challenge in regenerative medicine is the development of grafts that can be vascularised suc...
Porous scaffolds are limited in volume due to diffusion constraint and delay of vascular network for...
A major problem in the field of tissue engineering (TE) is graft failure due to avascular necrosis o...
The development of vascularized scaffolds remains one of the major challenges in tissue engineering,...
The wound healing process is much more complex than just the four phases of hemostasis, inflammation...
Pre-cellularised scaffolds are limited in volume due to the constraints of the time delay required f...
Modular tissue engineering is a strategy to create scalable, self-assembling, three-dimensional (3D)...
In tissue engineering, the generation and functional maintenance of dense voluminous tissues is main...
Tissue engineering has been a rapidly expanding field dedicated to regeneration of tissue. The field...
Collagen scaffolds provide a promising platform for tissue regeneration due to their ability to supp...
Next generation of biomaterials with enhanced functionalities requires the integration of material s...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...