Using a modular approach, a vascularized tissue construct is created by embedding functional cells within submillimeter-sized collagen cylinders (modules) while the outside surfaces are seeded with endothelial cells (EC). The void spaces created by randomly packing modules into a container form EC-lined perfusion channels. Upon implantation, the tissues are remodeled by and integrated into the host and experience, to some degree, immune and inflammatory responses. This work utilized microfluidic techniques to study and model the tissue remodeling in vitro in the absence of the host response. When the construct’s tortuous perfusion channels were reproduced in poly(dimethylsiloxane) microfluidic devices and lined with EC, perfusion at hig...
Aims: Tissue engineering is an innovative method to restore cardiovascular tissue function by implan...
Organs-on-chips are microengineered in vitro tissue structures that can be used as platforms for phy...
Modular tissue engineering is a strategy to create scalable, self-assembling, three-dimensional (3D)...
An in vitro tissue construct amenable to perfusion was formed by randomly packing mesenchymal stroma...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
Survival of engineered tissues in vivo requires the presence of an internal vascular network and imm...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
In vitro platforms to study endothelial cells and vascular biology are largely limited to 2D endothe...
Microfluidic technology has led to the development of advanced in vitro tumor platforms that overcom...
Development of a functional vascular network is a major problem limiting current tissue engineering ...
Vessel geometries in microengineered in vitro vascular models are important to recapitulate a pathop...
Introduction: The integration of engineered tissues after implantation is limited due to the lack of...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
From the inception of tissue engineering, tissue vascularization has been one of the greatest challe...
Aims: Tissue engineering is an innovative method to restore cardiovascular tissue function by implan...
Aims: Tissue engineering is an innovative method to restore cardiovascular tissue function by implan...
Organs-on-chips are microengineered in vitro tissue structures that can be used as platforms for phy...
Modular tissue engineering is a strategy to create scalable, self-assembling, three-dimensional (3D)...
An in vitro tissue construct amenable to perfusion was formed by randomly packing mesenchymal stroma...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
Survival of engineered tissues in vivo requires the presence of an internal vascular network and imm...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
In vitro platforms to study endothelial cells and vascular biology are largely limited to 2D endothe...
Microfluidic technology has led to the development of advanced in vitro tumor platforms that overcom...
Development of a functional vascular network is a major problem limiting current tissue engineering ...
Vessel geometries in microengineered in vitro vascular models are important to recapitulate a pathop...
Introduction: The integration of engineered tissues after implantation is limited due to the lack of...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
From the inception of tissue engineering, tissue vascularization has been one of the greatest challe...
Aims: Tissue engineering is an innovative method to restore cardiovascular tissue function by implan...
Aims: Tissue engineering is an innovative method to restore cardiovascular tissue function by implan...
Organs-on-chips are microengineered in vitro tissue structures that can be used as platforms for phy...
Modular tissue engineering is a strategy to create scalable, self-assembling, three-dimensional (3D)...