Perfusable vasculatures are essential for engineering three-dimensional thick tissues and organs in the fields of tissue engineering and regenerative medicine. Here, we describe an approach for the fabrication of double-layered vascular-like structures (DVSs) composed of a monolayer of human vascular endothelial cells (HUVECs) covered with a dense human smooth muscle cell (SMC) layer. HUVECs were attached to a gold needle via the oligopeptide self-assembled monolayer and grown to form a HUVEC monolayer that was subsequently embedded in a photo-crosslinkable gelatin hydrogel containing SMC spheroids in a culture chamber. During four days of culture, the hydrogel significantly contracted and formed a dense SMC layer around the needle. The bin...
There is an ever-growing demand for donor organs in the world today which is unmet by the very limit...
Over the past three decades, the field of tissue engineering has witnessed significant advancements....
Bioengineered grafts have the potential to overcome the limitations of autologous and non-resorbable...
Perfusable vasculatures are essential for engineering three-dimensional thick tissues and organs in ...
<div><p>Fabrication of vascular networks is essential for engineering three-dimensional thick tissue...
Fabrication of vascular networks is essential for engineering three-dimensional thick tissues and or...
Fabrication of vascular networks is essential for engineering three-dimensional thick tissues and or...
The bioengineering of artificial tissue constructs requires special attention to their fast vascular...
This dissertation focuses on the development of novel methods for tissue engineering the medial laye...
[[abstract]]A major challenge in tissue engineering is the lack of proper vascularization. Although ...
Cell-laden, hydrogel based 3D scaffolds have been established for engineered tissue. Artificial tiss...
AbstractDevelopment of the technique for constructing an internal perfusable vascular network is a c...
In order to fabricate a large-volume bioengineered tissue, building vasculature is the most importan...
One of the greatest challenges currently faced in tissue engineering is the incorporation of vascula...
Development of the technique for constructing an internal perfusable vascular network is a challengi...
There is an ever-growing demand for donor organs in the world today which is unmet by the very limit...
Over the past three decades, the field of tissue engineering has witnessed significant advancements....
Bioengineered grafts have the potential to overcome the limitations of autologous and non-resorbable...
Perfusable vasculatures are essential for engineering three-dimensional thick tissues and organs in ...
<div><p>Fabrication of vascular networks is essential for engineering three-dimensional thick tissue...
Fabrication of vascular networks is essential for engineering three-dimensional thick tissues and or...
Fabrication of vascular networks is essential for engineering three-dimensional thick tissues and or...
The bioengineering of artificial tissue constructs requires special attention to their fast vascular...
This dissertation focuses on the development of novel methods for tissue engineering the medial laye...
[[abstract]]A major challenge in tissue engineering is the lack of proper vascularization. Although ...
Cell-laden, hydrogel based 3D scaffolds have been established for engineered tissue. Artificial tiss...
AbstractDevelopment of the technique for constructing an internal perfusable vascular network is a c...
In order to fabricate a large-volume bioengineered tissue, building vasculature is the most importan...
One of the greatest challenges currently faced in tissue engineering is the incorporation of vascula...
Development of the technique for constructing an internal perfusable vascular network is a challengi...
There is an ever-growing demand for donor organs in the world today which is unmet by the very limit...
Over the past three decades, the field of tissue engineering has witnessed significant advancements....
Bioengineered grafts have the potential to overcome the limitations of autologous and non-resorbable...