In recent years, microfluidic systems have been used to study fundamental aspects of angiogenesis through the patterning of single-layered, linear or geometric vascular channels. In vivo, however, capillaries exist in complex, three-dimensional (3D) networks, and angiogenic sprouting occurs with a degree of unpredictability in all x,y,z planes. The ability to generate capillary beds in vitro that can support thick, biological tissues remains a key challenge to the regeneration of vital organs. Here, we report the engineering of 3D capillary beds in an in vitro microfluidic platform that is comprised of a biocompatible collagen I gel supported by a mechanical framework of alginate beads. The engineered vessels have patent lumens, form robust...
Biomimetic models of microvasculature could enable assays of complex cellular behavior at the capill...
From the inception of tissue engineering, tissue vascularization has been one of the greatest challe...
The lack of vascularization limits the creation of engineered tissue constructs with clinically rele...
<div><p>In recent years, microfluidic systems have been used to study fundamental aspects of angioge...
AbstractDevelopment of the technique for constructing an internal perfusable vascular network is a c...
Development of the technique for constructing an internal perfusable vascular network is a challengi...
<p>(<b>a</b>) The microfluidic-based cell culture platform directs vascular growth along an alginate...
The development of complex and large 3D vascularized tissue constructs remains the major goal of tis...
Objectives: A vascular supply network is essential in engineered tissues >100-200-mu m thickness....
[[abstract]]The microvascular network is a simple but critical system that is responsible for a rang...
Abstract New and more biologically relevant in vitro models are needed for use in drug development, ...
This paper presents in vitro microvascular network formation within 3D gel scaffolds made from diffe...
Although there are various pre-existing technologies for engineering vasculatures, multiscale modeli...
The microvascular network is a simple but critical system that is responsible for a range of importa...
Clinicians have made practical efforts for over 100 years in replacing damaged tissues and organs. H...
Biomimetic models of microvasculature could enable assays of complex cellular behavior at the capill...
From the inception of tissue engineering, tissue vascularization has been one of the greatest challe...
The lack of vascularization limits the creation of engineered tissue constructs with clinically rele...
<div><p>In recent years, microfluidic systems have been used to study fundamental aspects of angioge...
AbstractDevelopment of the technique for constructing an internal perfusable vascular network is a c...
Development of the technique for constructing an internal perfusable vascular network is a challengi...
<p>(<b>a</b>) The microfluidic-based cell culture platform directs vascular growth along an alginate...
The development of complex and large 3D vascularized tissue constructs remains the major goal of tis...
Objectives: A vascular supply network is essential in engineered tissues >100-200-mu m thickness....
[[abstract]]The microvascular network is a simple but critical system that is responsible for a rang...
Abstract New and more biologically relevant in vitro models are needed for use in drug development, ...
This paper presents in vitro microvascular network formation within 3D gel scaffolds made from diffe...
Although there are various pre-existing technologies for engineering vasculatures, multiscale modeli...
The microvascular network is a simple but critical system that is responsible for a range of importa...
Clinicians have made practical efforts for over 100 years in replacing damaged tissues and organs. H...
Biomimetic models of microvasculature could enable assays of complex cellular behavior at the capill...
From the inception of tissue engineering, tissue vascularization has been one of the greatest challe...
The lack of vascularization limits the creation of engineered tissue constructs with clinically rele...