Bioengineered grafts have the potential to overcome the limitations of autologous and non-resorbable synthetic vessels as vascular substitutes. However, one of the challenges in creating these living grafts is to induce and maintain multiple cell phenotypes with a biomimetic organization. Our biomimetic grafts with heterotypic design hold promises for functional neovessel regeneration by guiding the layered cellular and tissue organization into a native-like structure. In this study, a perfusable two-compartment bioreactor chamber was designed for the further maturation of these vascular grafts, with a compartmentalized exposure of the graft's luminal and outer layer to cell-specific media. We used the system for a co-culture of endothelial...
Bionic grafts hold great promise for directing tissue regeneration. In vascular tissue engineering, ...
There is a large demand for tissue engineered vascular grafts for the application of vascular recons...
International audienceVascular tissue engineering aims to develop implantable blood-vessels, exhibit...
Bioengineered grafts have the potential to overcome the limitations of autologous and non-resorbable...
To facilitate true regeneration, a vascular graft should direct the evolution of a neovessel to obta...
Abstract Tissue engineered vascular grafts (TEVG) are potentially clear from ethical and epidemiolog...
Despite the tremendous advances in the past few decades, the clinical problems associated with low m...
Survival of engineered tissues in vivo requires the presence of an internal vascular network and imm...
Perfusable vasculatures are essential for engineering three-dimensional thick tissues and organs in ...
Tissue-engineered vascular scaffolds provide a promising solution for the replacement of diseased va...
An in vitro tissue construct amenable to perfusion was formed by randomly packing mesenchymal stroma...
Tissue engineering and regenerative medicine has been vast developing since the past decade. A prefo...
The survival and function of transplanted tissue engineered constructs and organs require a function...
Abstract In vitro recapitulation of an organotypic stromal environment, enabling efficient angiogene...
Tissue engineering aims to understand the naturally-occurring, complexly efficient biological system...
Bionic grafts hold great promise for directing tissue regeneration. In vascular tissue engineering, ...
There is a large demand for tissue engineered vascular grafts for the application of vascular recons...
International audienceVascular tissue engineering aims to develop implantable blood-vessels, exhibit...
Bioengineered grafts have the potential to overcome the limitations of autologous and non-resorbable...
To facilitate true regeneration, a vascular graft should direct the evolution of a neovessel to obta...
Abstract Tissue engineered vascular grafts (TEVG) are potentially clear from ethical and epidemiolog...
Despite the tremendous advances in the past few decades, the clinical problems associated with low m...
Survival of engineered tissues in vivo requires the presence of an internal vascular network and imm...
Perfusable vasculatures are essential for engineering three-dimensional thick tissues and organs in ...
Tissue-engineered vascular scaffolds provide a promising solution for the replacement of diseased va...
An in vitro tissue construct amenable to perfusion was formed by randomly packing mesenchymal stroma...
Tissue engineering and regenerative medicine has been vast developing since the past decade. A prefo...
The survival and function of transplanted tissue engineered constructs and organs require a function...
Abstract In vitro recapitulation of an organotypic stromal environment, enabling efficient angiogene...
Tissue engineering aims to understand the naturally-occurring, complexly efficient biological system...
Bionic grafts hold great promise for directing tissue regeneration. In vascular tissue engineering, ...
There is a large demand for tissue engineered vascular grafts for the application of vascular recons...
International audienceVascular tissue engineering aims to develop implantable blood-vessels, exhibit...