International audienceWe introduce an intrinsically multiplexed and easy to implement method to apply an external force to a biomolecule and thus probe its interaction with a second biomolecule or, more generally, its environment (for example, the cell membrane). We take advantage of the hydrodynamic interaction with a controlled fluid flow within a microfluidic channel to apply a force. By labeling the biomolecule with a nanoparticle that acts as a kite and increases the hydrodynamic interaction with the fluid, the drag induced by convection becomes important. We use this approach to track the motion of single membrane receptors, the Clostridium perfringens ε-toxin (CPεT) receptors that are confined in lipid raft platforms, and probe their...
In this work we show how hydrodynamic forces can be used to locally trap molecules in a supported li...
Cell lipid membranes are the site of vital biological processes, such as motility, trafficking, and ...
Tracing the motion of macromolecules, viruses, and nanoparticles adsorbed onto cell membranes is cur...
International audienceWe introduce an intrinsically multiplexed and easy to implement method to appl...
AbstractWe introduce an intrinsically multiplexed and easy to implement method to apply an external ...
sy or, ith act e hat em al p bef aft p an ata on, rm to lipid rafts or platforms (3–7), cytoskeleton...
The cellular membrane is a vital part of the cell, which plays a crucial role in many cellular proce...
International audienceWe track single toxin receptors on the apical cell membrane of MDCK cells with...
Cancer cells become mobile by remodelling their cytoskeleton to form migratory structures. This tran...
AbstractWe track single toxin receptors on the apical cell membrane of MDCK cells with Eu-doped oxid...
The separation of molecules residing in the cell membrane remains a largely unsolved problem in the ...
The plasma membrane is the organelle that encompasses the cell and represents the interface through ...
International audienceMapping of the forces on biomolecules in cell membranes has spurred the develo...
In this work we show how hydrodynamic forces can be used to locally trap molecules in a supported li...
Cell lipid membranes are the site of vital biological processes, such as motility, trafficking, and ...
Tracing the motion of macromolecules, viruses, and nanoparticles adsorbed onto cell membranes is cur...
International audienceWe introduce an intrinsically multiplexed and easy to implement method to appl...
AbstractWe introduce an intrinsically multiplexed and easy to implement method to apply an external ...
sy or, ith act e hat em al p bef aft p an ata on, rm to lipid rafts or platforms (3–7), cytoskeleton...
The cellular membrane is a vital part of the cell, which plays a crucial role in many cellular proce...
International audienceWe track single toxin receptors on the apical cell membrane of MDCK cells with...
Cancer cells become mobile by remodelling their cytoskeleton to form migratory structures. This tran...
AbstractWe track single toxin receptors on the apical cell membrane of MDCK cells with Eu-doped oxid...
The separation of molecules residing in the cell membrane remains a largely unsolved problem in the ...
The plasma membrane is the organelle that encompasses the cell and represents the interface through ...
International audienceMapping of the forces on biomolecules in cell membranes has spurred the develo...
In this work we show how hydrodynamic forces can be used to locally trap molecules in a supported li...
Cell lipid membranes are the site of vital biological processes, such as motility, trafficking, and ...
Tracing the motion of macromolecules, viruses, and nanoparticles adsorbed onto cell membranes is cur...