We present a simple method for the multiplexed formation of droplet interface bilayers (DIBs) using a mechanically operated linear acrylic chamber array. To demonstrate the functionality of the chip design, a lipid membrane permeability assay is performed. We show that multiple, symmetric DIBs can be created and separated using this robust low-cost approach
Droplet-interface bilayers (DIBs) have been developed as a miniature model membrane system with dist...
Whilst it is highly desirable to produce artificial lipid bilayer arrays allowing for systematic hig...
Understanding how drug molecules interact with our body and what effects they may induce as a result...
We present a simple method for the multiplexed formation of droplet interface bilayers (DIBs) using ...
We present a simple, automated method for high-throughput formation of droplet interface bilayers (D...
Droplet-interface bilayers (DIBs) have applications in disciplines ranging from biology to computing...
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...
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...
Droplet Interface Bilayers (DIBs) have a number of attributes that distinguish them from conventiona...
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...
Droplet interface bilayers (DIBs) have tremendous promise as platforms for fundamental biomembrane s...
We investigated the permeation of molecules across lipid membranes on an open microfluidic platform....
Droplet-interface bilayers (DIBs) have been developed as a miniature model membrane system with dist...
Whilst it is highly desirable to produce artificial lipid bilayer arrays allowing for systematic hig...
Understanding how drug molecules interact with our body and what effects they may induce as a result...
We present a simple method for the multiplexed formation of droplet interface bilayers (DIBs) using ...
We present a simple, automated method for high-throughput formation of droplet interface bilayers (D...
Droplet-interface bilayers (DIBs) have applications in disciplines ranging from biology to computing...
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...
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...
Droplet Interface Bilayers (DIBs) have a number of attributes that distinguish them from conventiona...
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...
Droplet interface bilayers (DIBs) have tremendous promise as platforms for fundamental biomembrane s...
We investigated the permeation of molecules across lipid membranes on an open microfluidic platform....
Droplet-interface bilayers (DIBs) have been developed as a miniature model membrane system with dist...
Whilst it is highly desirable to produce artificial lipid bilayer arrays allowing for systematic hig...
Understanding how drug molecules interact with our body and what effects they may induce as a result...