Cell lipid membranes are the site of vital biological processes, such as motility, trafficking, and sensing, many of which involve mechanical forces. Elucidating the interplay between such bioprocesses and mechanical forces requires the use of tools that apply and measure piconewton-level forces, e.g., optical tweezers. Here, we introduce the combination of optical tweezers with free-standing lipid bilayers, which are fully accessible on both sides of the membrane. In the vicinity of the lipid bilayer, optical trapping would normally be impossible due to optical distortions caused by pockets of the solvent trapped within the membrane. We solve this by drastically reducing the size of these pockets via tuning of the solvent and flow cell mat...
International audiencePulling membrane nanotubes from liposomes presents a powerful method to gain a...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
Increasing awareness of bioeffects and toxicity of nanomaterials interacting with cells puts in focu...
Cell lipid membranes are the site of vital biological processes, such as motility, trafficking, and ...
This thesis presents a reliable technology to assemble free standing lipid membranes using microfabr...
Here, we describe how to extract tethers or lipid membrane nanotubes from the plasma membrane of cel...
Optical tweezers have been used successfully to provide precise manipulation of micron sized particl...
International audienceCell processes like endocytosis, membrane resealing, signaling and transcripti...
ABSTRACT: Remotely manipulating a large number of micro-scopic objects is important to soft-condense...
Remotely manipulating a large number of microscopic objects is important to soft-condensed matter ph...
Biological cells continuously change shape allowing essential functions such as cell motility, vesic...
There is currently great interest in the development of lipid enclosed systems with complex geometri...
The mechanical properties of the cell components, cell plasma membrane and cytoskeleton, as well as ...
ABSTRACT A localized point-like force applied perpendicular to a vesicular membrane layer, using an ...
Intracellular transport involves membrane compartments and thus requires dynamic changes in the morp...
International audiencePulling membrane nanotubes from liposomes presents a powerful method to gain a...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
Increasing awareness of bioeffects and toxicity of nanomaterials interacting with cells puts in focu...
Cell lipid membranes are the site of vital biological processes, such as motility, trafficking, and ...
This thesis presents a reliable technology to assemble free standing lipid membranes using microfabr...
Here, we describe how to extract tethers or lipid membrane nanotubes from the plasma membrane of cel...
Optical tweezers have been used successfully to provide precise manipulation of micron sized particl...
International audienceCell processes like endocytosis, membrane resealing, signaling and transcripti...
ABSTRACT: Remotely manipulating a large number of micro-scopic objects is important to soft-condense...
Remotely manipulating a large number of microscopic objects is important to soft-condensed matter ph...
Biological cells continuously change shape allowing essential functions such as cell motility, vesic...
There is currently great interest in the development of lipid enclosed systems with complex geometri...
The mechanical properties of the cell components, cell plasma membrane and cytoskeleton, as well as ...
ABSTRACT A localized point-like force applied perpendicular to a vesicular membrane layer, using an ...
Intracellular transport involves membrane compartments and thus requires dynamic changes in the morp...
International audiencePulling membrane nanotubes from liposomes presents a powerful method to gain a...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
Increasing awareness of bioeffects and toxicity of nanomaterials interacting with cells puts in focu...