International audienceWe present experiments involving cancer cells adhering to microchannels, subjected to increasing shear stresses (0.1-30 Pa). Morphological studies were carried out at different shear stresses. Cells exhibit spreading patterns similar to those observed under static conditions, as long as the shear stress is not too high. At critical wall shear stresses (around 2-5 Pa), cell-substrate contact area decreases until detachment at the larger stresses. Critical shear stresses are found to be lower for higher confinements (i.e. smaller cell height to channel height ratio). Fluorescent techniques were used to locate focal adhesions (typically 1 lm(2) in size) under various shearing conditions, showing that cells increase the nu...
Adaptabilities of mammalian cells in physiological confinements of the vasculature and tissue-matric...
Biofilm growth (fouling) in microdevices is a critical concern in several industrial, engineering an...
AbstractWe predict the amplification of mechanical stress, force, and torque on an adherent cell due...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
Besides the internal genetic content and the chemical exchanges with external tissue environment, th...
<p>The shear stresses are 3, 7.5, 10, 15, and 30 dyne/cm<sup>2</sup> applied in all three cell lines...
Our laboratory has the fundamental responsibility to study cancer stem cells (CSC) in various models...
Our laboratory has the fundamental responsibility to study cancer stem cells (CSC) in various models...
Our laboratory has the fundamental responsibility to study cancer stem cells (CSC) in various models...
The impingement of a submerged, liquid jet onto a cell-covered surface allows assessing cell attachm...
International audienceWe have developed a technique to directly quantify cell-substrate adhesion for...
International audienceWe have developed a technique to directly quantify cell-substrate adhesion for...
International audienceWe have developed a technique to directly quantify cell-substrate adhesion for...
Adaptabilities of mammalian cells in physiological confinements of the vasculature and tissue-matric...
Biofilm growth (fouling) in microdevices is a critical concern in several industrial, engineering an...
AbstractWe predict the amplification of mechanical stress, force, and torque on an adherent cell due...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
Besides the internal genetic content and the chemical exchanges with external tissue environment, th...
<p>The shear stresses are 3, 7.5, 10, 15, and 30 dyne/cm<sup>2</sup> applied in all three cell lines...
Our laboratory has the fundamental responsibility to study cancer stem cells (CSC) in various models...
Our laboratory has the fundamental responsibility to study cancer stem cells (CSC) in various models...
Our laboratory has the fundamental responsibility to study cancer stem cells (CSC) in various models...
The impingement of a submerged, liquid jet onto a cell-covered surface allows assessing cell attachm...
International audienceWe have developed a technique to directly quantify cell-substrate adhesion for...
International audienceWe have developed a technique to directly quantify cell-substrate adhesion for...
International audienceWe have developed a technique to directly quantify cell-substrate adhesion for...
Adaptabilities of mammalian cells in physiological confinements of the vasculature and tissue-matric...
Biofilm growth (fouling) in microdevices is a critical concern in several industrial, engineering an...
AbstractWe predict the amplification of mechanical stress, force, and torque on an adherent cell due...