Cell signalling and mechanics influence vascular pathophysiology and there is an increasing demand for in vitro model systems that enable examination of signalling between vascular cells under hemodynamic conditions. Current 3D vessel wall constructs do not recapitulate the mechanical conditions of the native tissue nor do they allow examination of cell-cell interactions under relevant hemodynamic conditions. Here, we describe a 3D microfluidic chip model of arterial endothelial and smooth muscle cells where cellular organization, composition and interactions, as well as the mechanical environment of the arterial wall are mimicked. The hemodynamic EC-VSMC-signalling-on-a-chip consists of two parallel polydimethylsiloxane (PDMS) cell culture...
In blood vessel engineering, an optimal bioartifical scaffold can be characterized as a 3D tubular s...
Microphysiological systems (MPS), or "organ-on-a-chip" platforms, aim to recapitulate in vivo physio...
Inflammation and the immune response in atherosclerosis are complex processes involving local hemody...
Cell signalling and mechanics influence vascular pathophysiology and there is an increasing demand f...
The data and resulting publication describe the fabrication and characterization of an artery-on-chi...
Crosstalk between endothelial cells (ECs) and pericytes or vascular smooth muscle cells (VSMCs) is e...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
This paper presents a microfluidic device enabling culture of vascular smooth muscle cells (VSMCs) w...
Microphysiological systems (MPSs) (i.e., tissue or organ chips) exploit microfluidics and 3D cell cu...
Blood vessel models are increasingly recognized to have value in understanding disease and drug disc...
The identity of cells generating the first blood cells in the mammalian embryo was unknown until rec...
Organ on a chip is a biomedical technology that implements the functions and characteristics of a sp...
The human body employs a tube-like system calledblood vessels for transporting molecules such as o...
The vascular system is one of the first to develop during embryogenesis and is essential for all org...
In blood vessel engineering, an optimal bioartifical scaffold can be characterized as a 3D tubular s...
Microphysiological systems (MPS), or "organ-on-a-chip" platforms, aim to recapitulate in vivo physio...
Inflammation and the immune response in atherosclerosis are complex processes involving local hemody...
Cell signalling and mechanics influence vascular pathophysiology and there is an increasing demand f...
The data and resulting publication describe the fabrication and characterization of an artery-on-chi...
Crosstalk between endothelial cells (ECs) and pericytes or vascular smooth muscle cells (VSMCs) is e...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
This paper presents a microfluidic device enabling culture of vascular smooth muscle cells (VSMCs) w...
Microphysiological systems (MPSs) (i.e., tissue or organ chips) exploit microfluidics and 3D cell cu...
Blood vessel models are increasingly recognized to have value in understanding disease and drug disc...
The identity of cells generating the first blood cells in the mammalian embryo was unknown until rec...
Organ on a chip is a biomedical technology that implements the functions and characteristics of a sp...
The human body employs a tube-like system calledblood vessels for transporting molecules such as o...
The vascular system is one of the first to develop during embryogenesis and is essential for all org...
In blood vessel engineering, an optimal bioartifical scaffold can be characterized as a 3D tubular s...
Microphysiological systems (MPS), or "organ-on-a-chip" platforms, aim to recapitulate in vivo physio...
Inflammation and the immune response in atherosclerosis are complex processes involving local hemody...