Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to their ubiquity, they are promising drug targets but are not yet fully exploited as such due to experimental restrictions in their study. Electrical measurement of ion channels activity within in vitro artificial lipid bilayers would enable to overcome these restrictions. However, there is not yet a system satisfying all the requirements for ion channels studies: stability and purity of the lipid bilayer, low noise level, fast insertion of ion channels, fluidic integration, ability to perform simultaneous optical characterization. The aim of this phD was to assess in which extent the use of an SOI (Silicon On Insulator) substrate bearing nano...
Ces travaux de thèse s'inscrivent dans le cadre d'un vaste projet qui vise à construire des membrane...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Les canaux ioniques sont des protéines membranaires permettant le transport ionique au travers des m...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
none5Different electrophysiology setups allow single ion channel recordings using Lipid Bilayer Memb...
Ces travaux de thèse s'inscrivent dans le cadre d'un vaste projet qui vise à construire des membrane...
Ces travaux de thèse s'inscrivent dans le cadre d'un vaste projet qui vise à construire des membrane...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Les canaux ioniques sont des protéines membranaires permettant le transport ionique au travers des m...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
none5Different electrophysiology setups allow single ion channel recordings using Lipid Bilayer Memb...
Ces travaux de thèse s'inscrivent dans le cadre d'un vaste projet qui vise à construire des membrane...
Ces travaux de thèse s'inscrivent dans le cadre d'un vaste projet qui vise à construire des membrane...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...