We present a simple, automated method for high-throughput formation of droplet interface bilayers (DIBs) in a microfluidic device. We can form complex DIB networks that are able to fill predefined three dimensional architectures. Moreover, we demonstrate the flexibility of the system by using a variety of lipids including 1,2-diphytanoyl-sn-glycero-3-phosphocholine (DPhPC) and 1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC)
Synthetic lipid bilayers provide models of cell membranes to study biomolecular interactions and sig...
The ability to make artificial lipid bilayers compatible with a wide range of environments, and with...
Droplet interface bilayers (DIBs) have tremendous promise as platforms for fundamental biomembrane s...
The ability to form artificial lipid membranes in a reliable, high-throughput lab-on-a-chip format h...
Basic biophysical studies and pharmacological processes can be investigated by mimicking the intrace...
Droplet-interface bilayers (DIBs) have applications in disciplines ranging from biology to computing...
We present a simple method for the multiplexed formation of droplet interface bilayers (DIBs) using ...
We report a new platform technology to systematically assemble droplet interface bilayer (DIB) netwo...
Networks of droplets, in which aqueous compartments are separated by lipid bilayers, have shown grea...
An aqueous droplet in a solution of lipid in oil acquires a lipid monolayer coat. When two such drop...
An aqueous droplet in a solution of lipid in oil acquires a lipid monolayer coat. When two such dro...
ABSTRACT We report on microfluidic strategies to generate several multi-compartment membrane-based s...
We report on microfluidic strategies to generate several multi-compartment membrane-based structures...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
Understanding how drug molecules interact with our body and what effects they may induce as a result...
Synthetic lipid bilayers provide models of cell membranes to study biomolecular interactions and sig...
The ability to make artificial lipid bilayers compatible with a wide range of environments, and with...
Droplet interface bilayers (DIBs) have tremendous promise as platforms for fundamental biomembrane s...
The ability to form artificial lipid membranes in a reliable, high-throughput lab-on-a-chip format h...
Basic biophysical studies and pharmacological processes can be investigated by mimicking the intrace...
Droplet-interface bilayers (DIBs) have applications in disciplines ranging from biology to computing...
We present a simple method for the multiplexed formation of droplet interface bilayers (DIBs) using ...
We report a new platform technology to systematically assemble droplet interface bilayer (DIB) netwo...
Networks of droplets, in which aqueous compartments are separated by lipid bilayers, have shown grea...
An aqueous droplet in a solution of lipid in oil acquires a lipid monolayer coat. When two such drop...
An aqueous droplet in a solution of lipid in oil acquires a lipid monolayer coat. When two such dro...
ABSTRACT We report on microfluidic strategies to generate several multi-compartment membrane-based s...
We report on microfluidic strategies to generate several multi-compartment membrane-based structures...
We describe a protocol for forming an artificial lipid bilayer by contacting nanoliter aqueous dropl...
Understanding how drug molecules interact with our body and what effects they may induce as a result...
Synthetic lipid bilayers provide models of cell membranes to study biomolecular interactions and sig...
The ability to make artificial lipid bilayers compatible with a wide range of environments, and with...
Droplet interface bilayers (DIBs) have tremendous promise as platforms for fundamental biomembrane s...