We describe the formation of artificial bilayer lipid membranes (BLMs) by the controlled, electrical manipulation of aqueous droplets immersed in a lipid–alkane solution. Droplet movement was generated using dielectrophoresis on planar microelectrodes covered in a thin insulator. Droplets, surrounded by lipid monolayers, were brought into contact and spontaneously formed a BLM. The method produced BLMs suitable for single-channel recording of membrane protein activity and the technique can be extended to create programmable BLM arrays and networks
To develop a reliable method for on-chip bilayer lipid membrane (BLM) formation, which could be empl...
Droplet lipid bilayers have been shown to be robust platforms for studying membrane proteins in a hi...
To develop a reliable method for on-chip bilayer lipid membrane (BLM) formation, which could be empl...
We describe the formation of artificial bilayer lipid membranes (BLMs) by the controlled, electrical...
We describe the formation of artificial bilayer lipid membranes (BLMs) by the controlled, electrical...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
The goal of our work was to extend an experimental method of synthetic lipid membrane formation for ...
This work presents the development of electrowetting on dielectric and liquid dielectrophoresis as a...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
To develop a reliable method for on-chip bilayer lipid membrane (BLM) formation, which could be empl...
Droplet lipid bilayers have been shown to be robust platforms for studying membrane proteins in a hi...
To develop a reliable method for on-chip bilayer lipid membrane (BLM) formation, which could be empl...
We describe the formation of artificial bilayer lipid membranes (BLMs) by the controlled, electrical...
We describe the formation of artificial bilayer lipid membranes (BLMs) by the controlled, electrical...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
The goal of our work was to extend an experimental method of synthetic lipid membrane formation for ...
This work presents the development of electrowetting on dielectric and liquid dielectrophoresis as a...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
To develop a reliable method for on-chip bilayer lipid membrane (BLM) formation, which could be empl...
Droplet lipid bilayers have been shown to be robust platforms for studying membrane proteins in a hi...
To develop a reliable method for on-chip bilayer lipid membrane (BLM) formation, which could be empl...