Cell surface charge is an important element of the function of biological barriers, but no chip device has been described to measure cell surface charge properties of confluent barrier cell monolayers. The aim of this study was the design and fabrication of a dynamic lab-on-a-chip (LOC) device which is suitable to monitor transcellular electrical resistance, as well as streaming potential parallel to the surface of cell layers. We successfully measured the streaming potential of a biological barrier culture model with the help of our previously published versatile lab-on-a-chip device equipped with two Ag/AgCl electrodes. The inclusion of these "zeta electrodes", a voltage preamplifier and an oscilloscope in our set-up made it possible to s...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
With the advent of semiconductor technologies, great advances have been achieved with the combinatio...
Here, we present a novel, cleanroom-free way of integrating electrodes in a typical poly(dimethylsil...
Biological barriers are essential for the maintenance of organ homeostasis and their dysfunction is ...
Transepithelial/transendothelial electrical resistance (TEER) measurements can be applied in organ-o...
ABSTRACT The electrical sheet resistance between living cells grown on planar electronic contacts of...
AbstractThe electrical sheet resistance between living cells grown on planar electronic contacts of ...
Physiological barriers are located at the interface between the organism and the outside world or li...
A technique based on the measurement of streaming potentials has been developed to evaluate the elec...
International audienceMicrofluidic lab-on-a-chip (LOC) devices allow the study of blood-brain barrie...
The blood-brain barrier (BBB) is crucial to maintain brainhomeostasis and prevent toxic substances f...
Organs-on-chips, in vitro models involving the culture of (human) tissues inside microfluidic device...
Disruption of tissue barriers formed by cells is an integral part of the pathophysiology of many dis...
The negative surface charge of brain microvessel endothelial cells is derived from the special compo...
A realistic model of the blood-brain barrier (BBB) is valuable to perform drug screening experiments...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
With the advent of semiconductor technologies, great advances have been achieved with the combinatio...
Here, we present a novel, cleanroom-free way of integrating electrodes in a typical poly(dimethylsil...
Biological barriers are essential for the maintenance of organ homeostasis and their dysfunction is ...
Transepithelial/transendothelial electrical resistance (TEER) measurements can be applied in organ-o...
ABSTRACT The electrical sheet resistance between living cells grown on planar electronic contacts of...
AbstractThe electrical sheet resistance between living cells grown on planar electronic contacts of ...
Physiological barriers are located at the interface between the organism and the outside world or li...
A technique based on the measurement of streaming potentials has been developed to evaluate the elec...
International audienceMicrofluidic lab-on-a-chip (LOC) devices allow the study of blood-brain barrie...
The blood-brain barrier (BBB) is crucial to maintain brainhomeostasis and prevent toxic substances f...
Organs-on-chips, in vitro models involving the culture of (human) tissues inside microfluidic device...
Disruption of tissue barriers formed by cells is an integral part of the pathophysiology of many dis...
The negative surface charge of brain microvessel endothelial cells is derived from the special compo...
A realistic model of the blood-brain barrier (BBB) is valuable to perform drug screening experiments...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
With the advent of semiconductor technologies, great advances have been achieved with the combinatio...
Here, we present a novel, cleanroom-free way of integrating electrodes in a typical poly(dimethylsil...