This paper describes the use of a newly-developed micro-chip bilayer platform to examine the electrophysiological properties of the prokaryotic voltage-gated sodium channel pore (NavSp) from Silicibacter pomeroyi. The platform allows up to 6 bilayers to be analysed simultaneously. Proteoliposomes were incorporated into suspended lipid bilayers formed within the microfluidic bilayer chips. The chips provide access to bilayers from either side, enabling the fast and controlled titration of compounds. Dose-dependent modulation of the opening probability by the channel blocking drug nifedipine was measured and its IC50 determined
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
Ion channels are membrane proteins of interest for medical research and drug discovery, however a ma...
Abstract Background: Bacterial sodium channels are important models for understanding ion permeation...
This paper describes the use of a newly-developed micro-chip bilayer platform to examine the electro...
Planar lipid bilayer device, alternatively known as BLM, is a powerful tool to study functional prop...
<div><p>Planar lipid bilayer device, alternatively known as BLM, is a powerful tool to study functio...
Transmembrane ion channels can be used in biomaterials as a way to selectively allow only certain mo...
Single-channel electrophysiology with lipid bilayer systems requires ion channel expression, purific...
Recent studies have shown that membrane proteins can be efficiently synthesized in vitro before spon...
Functional assays of membrane proteins are becoming increasingly important, both in research and dru...
peer-reviewedThe eukaryotic voltage-gated sodium channel Nav is an integral membrane protein that tr...
Microsecond atomic detail equilibrium molecular dynamics simulations based on the open-state crystal...
The study and the exploitation of membrane proteins for drug screening applications requires a contr...
abstract: ABSTRACT The purpose of this study is to demonstrate that stable lipid bilayers can be s...
AbstractPainted bilayers containing reconstituted ion channels serve as a well defined model system ...
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
Ion channels are membrane proteins of interest for medical research and drug discovery, however a ma...
Abstract Background: Bacterial sodium channels are important models for understanding ion permeation...
This paper describes the use of a newly-developed micro-chip bilayer platform to examine the electro...
Planar lipid bilayer device, alternatively known as BLM, is a powerful tool to study functional prop...
<div><p>Planar lipid bilayer device, alternatively known as BLM, is a powerful tool to study functio...
Transmembrane ion channels can be used in biomaterials as a way to selectively allow only certain mo...
Single-channel electrophysiology with lipid bilayer systems requires ion channel expression, purific...
Recent studies have shown that membrane proteins can be efficiently synthesized in vitro before spon...
Functional assays of membrane proteins are becoming increasingly important, both in research and dru...
peer-reviewedThe eukaryotic voltage-gated sodium channel Nav is an integral membrane protein that tr...
Microsecond atomic detail equilibrium molecular dynamics simulations based on the open-state crystal...
The study and the exploitation of membrane proteins for drug screening applications requires a contr...
abstract: ABSTRACT The purpose of this study is to demonstrate that stable lipid bilayers can be s...
AbstractPainted bilayers containing reconstituted ion channels serve as a well defined model system ...
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
Ion channels are membrane proteins of interest for medical research and drug discovery, however a ma...
Abstract Background: Bacterial sodium channels are important models for understanding ion permeation...