The vascularization of tissue grafts is critical for maintaining viability of the cells within a transplanted graft. A number of strategies are currently being investigated including very promising microfluidics systems. Here, we explored the potential for generating a vasculature-patterned endothelial cells that could be integrated into distinct layers between sheets of primary cells. Bioinspired from the leaf veins, we generated a reverse mold with a fractal vascular-branching pattern that models the unique spatial arrangement over multiple length scales that precisely mimic branching vasculature. By coating the reverse mold with 50 μg ml-1 of fibronectin and stamping enabled selective adhesion of the human umbilical vein endothelial...
Development of a microvasculature into tissue-engineered bone substitutes represents a current chall...
[[abstract]]Although various research efforts have been made to produce a vascular-like network stru...
One of the challenging issues in tissue engineering is a building of functional vascular network sys...
The vascularization of tissue grafts is critical for maintaining viability of the cells within a tra...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
In order for engineered tissue grafts and eventually organs to successfully integrate in a clinical ...
Numerous microfabrication approaches have been developed to recapitulate morphologically and functio...
In order for engineered tissue grafts and eventually organs to successfully integrate in a clinical ...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
Numerous microfabrication approaches have been developed to recapitulate morphologically and functio...
Development of a microvasculature into tissue-engineered bone substitutes represents a current chall...
[[abstract]]Although various research efforts have been made to produce a vascular-like network stru...
One of the challenging issues in tissue engineering is a building of functional vascular network sys...
The vascularization of tissue grafts is critical for maintaining viability of the cells within a tra...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
In order for engineered tissue grafts and eventually organs to successfully integrate in a clinical ...
Numerous microfabrication approaches have been developed to recapitulate morphologically and functio...
In order for engineered tissue grafts and eventually organs to successfully integrate in a clinical ...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
Numerous microfabrication approaches have been developed to recapitulate morphologically and functio...
Development of a microvasculature into tissue-engineered bone substitutes represents a current chall...
[[abstract]]Although various research efforts have been made to produce a vascular-like network stru...
One of the challenging issues in tissue engineering is a building of functional vascular network sys...