Endothelial cells (ECs) form the inner lining of all blood vessels in the body, and coat the outer surfaces of heart valves. Because ECs are anchored to extracellular matrix proteins and are positioned between flowing blood and underlying interstitium, ECs are constantly exposed to hemodynamic shear, and act as a semi-permeable barrier to blood-borne factors. In vitro cell culture flow (ICF) systems have been employed as laboratory tools for testing endothelial properties such as adhesion strength, shear response, and permeability. Recently, advances in microscale technology have introduced microfluidic systems as alternatives to conventional ICF devices, with a multitude of practical advantages not available at the macroscale. However,...
Hydrodynamic flow is an essential stimulus in many cellular functions, regulating many mechanical se...
The overall goal of this method is to describe a technique to subject adherent cells to laminar flow...
Microscale technologies create great opportunities for biologists to unveil cellular or molecular me...
Endothelial cells (ECs) form the inner lining of all blood vessels in the body, and coat the outer s...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Endothelial cells comprise the inner lining of the entire circulatory system and are key mediators i...
Microfluidic, the technology that manipulates small amount of fluids in microscale complex devices, ...
International audienceMicrovasculatures-on-a-chip, i.e. in vitro models that mimic important feature...
Flow-induced parallel alignment of endothelial cells (ECs) is replicated in vitro in macroscale para...
Organ on a chip is a biomedical technology that implements the functions and characteristics of a sp...
Hydrostatic pressure can affect the structure and function of endothelial cells (ECs). A microfluidi...
Microfluidic technologies enable in vitro studies to closely simulate in vivo microvessel environmen...
Microfluidic technologies enable in vitro studies to closely simulate in vivo microvessel environmen...
Microfluidic technologies enable in vitro studies to closely simulate in vivomicrovessel envi-ronmen...
The identity of cells generating the first blood cells in the mammalian embryo was unknown until rec...
Hydrodynamic flow is an essential stimulus in many cellular functions, regulating many mechanical se...
The overall goal of this method is to describe a technique to subject adherent cells to laminar flow...
Microscale technologies create great opportunities for biologists to unveil cellular or molecular me...
Endothelial cells (ECs) form the inner lining of all blood vessels in the body, and coat the outer s...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Endothelial cells comprise the inner lining of the entire circulatory system and are key mediators i...
Microfluidic, the technology that manipulates small amount of fluids in microscale complex devices, ...
International audienceMicrovasculatures-on-a-chip, i.e. in vitro models that mimic important feature...
Flow-induced parallel alignment of endothelial cells (ECs) is replicated in vitro in macroscale para...
Organ on a chip is a biomedical technology that implements the functions and characteristics of a sp...
Hydrostatic pressure can affect the structure and function of endothelial cells (ECs). A microfluidi...
Microfluidic technologies enable in vitro studies to closely simulate in vivo microvessel environmen...
Microfluidic technologies enable in vitro studies to closely simulate in vivo microvessel environmen...
Microfluidic technologies enable in vitro studies to closely simulate in vivomicrovessel envi-ronmen...
The identity of cells generating the first blood cells in the mammalian embryo was unknown until rec...
Hydrodynamic flow is an essential stimulus in many cellular functions, regulating many mechanical se...
The overall goal of this method is to describe a technique to subject adherent cells to laminar flow...
Microscale technologies create great opportunities for biologists to unveil cellular or molecular me...