Fabrication of vascular networks is essential for engineering three-dimensional thick tissues and organs in the emerging fields of tissue engineering and regenerative medicine. In this study, we describe the fabrication of perfusable vascular-like structures by transferring endothelial cells using an electrochemical reaction as well as acceleration of subsequent endothelial sprouting by two stimuli: phorbol 12-myristate 13-acetate (PMA) and fluidic shear stress. The electrochemical transfer of cells was achieved using an oligopeptide that formed a dense molecular layer on a gold surface and was then electrochemically desorbed from the surface. Human umbilical vein endothelial cells (HUVECs), adhered to gold-coated needles (ϕ600 μm) via the ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
Introduction: During angiogenesis, endothelial cell (EC) sprouting occurs when select ECs lining a v...
An overriding limiting factor in tissue engineering is the current inability to vascularise large th...
<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...
Perfusable vasculatures are essential for engineering three-dimensional thick tissues and organs in ...
One of the greatest challenges currently faced in tissue engineering is the incorporation of vascula...
The bioengineering of artificial tissue constructs requires special attention to their fast vascular...
New blood vessel formation is essential for tissue regeneration to deliver oxygen and nutrients and ...
BACKGROUND: The initial procedure of the development of engineered tissues is cell seeding into thre...
Over the past three decades, the field of tissue engineering has witnessed significant advancements....
This project investigated the technical feasibility of creating an adherent layer of endothelial cel...
The development of vessel-like structures in vitro to mimic as well as to realize the possibility of...
<p>(A) Modification of the multi-needle surface with zwitterionic oligopeptides to mediate endotheli...
DoctorRecent advances in tissue engineering and regenerative medicine offer new therapeutic opportun...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
Introduction: During angiogenesis, endothelial cell (EC) sprouting occurs when select ECs lining a v...
An overriding limiting factor in tissue engineering is the current inability to vascularise large th...
<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...
Perfusable vasculatures are essential for engineering three-dimensional thick tissues and organs in ...
One of the greatest challenges currently faced in tissue engineering is the incorporation of vascula...
The bioengineering of artificial tissue constructs requires special attention to their fast vascular...
New blood vessel formation is essential for tissue regeneration to deliver oxygen and nutrients and ...
BACKGROUND: The initial procedure of the development of engineered tissues is cell seeding into thre...
Over the past three decades, the field of tissue engineering has witnessed significant advancements....
This project investigated the technical feasibility of creating an adherent layer of endothelial cel...
The development of vessel-like structures in vitro to mimic as well as to realize the possibility of...
<p>(A) Modification of the multi-needle surface with zwitterionic oligopeptides to mediate endotheli...
DoctorRecent advances in tissue engineering and regenerative medicine offer new therapeutic opportun...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
Introduction: During angiogenesis, endothelial cell (EC) sprouting occurs when select ECs lining a v...
An overriding limiting factor in tissue engineering is the current inability to vascularise large th...