Making and holding an artificial lipid bilayer horizontally in an aqueous solution within the microscopic working distance of similar to 100 mu m are essential for simultaneous single molecule imaging and single ion-channel electrical current recording. However, preparation of such a lipid bilayer without a solid support is technically challenging. In a typical supported lipid bilayer, the asymmetric local environments and the strong perturbation of the underneath solid or dense surface can diverge the normal behavior of membrane proteins and lipids. On the other hand, the suspended lipid bilayers can provide a native local environment for the membrane proteins and lipids by having fluids on both sides. In this technical report, we present ...
We present an innovative method to couple electrophysiological measurements with fluorescence imagin...
AbstractFluorescence interference-contrast (FLIC) microscopy is a powerful new technique to measure ...
We present an innovative method to couple electrophysiological measurements with fluorescence imagin...
Making and holding an artificial lipid bilayer horizontally in aqueous solution within the microscop...
Ion channel proteins play important roles in various cell functions, making them attractive drug tar...
Artificial lipid membranes are widely used as a model system to study single ion channel activity us...
AbstractArtificial lipid membranes are widely used as a model system to study single ion channel act...
Solid-supported lipid bilayers (SLBs) are an ideal model system to study natural cell membranes. The...
The ion flow through channel proteins embedded in a lipid bilayer membrane can be recorded as an ele...
Artificial bilayer containing reconstituted ion channels, transporters and pumps serve as a well-def...
A biological membrane not only forms a protective outer boundary for cells and organelles but also h...
AbstractPlanar lipid bilayers suspended in apertures provide a controlled environment for ion channe...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Recent studies have shown that membrane proteins can be efficiently synthesized in vitro before spon...
<div><p>We present an innovative method to couple electrophysiological measurements with fluorescenc...
We present an innovative method to couple electrophysiological measurements with fluorescence imagin...
AbstractFluorescence interference-contrast (FLIC) microscopy is a powerful new technique to measure ...
We present an innovative method to couple electrophysiological measurements with fluorescence imagin...
Making and holding an artificial lipid bilayer horizontally in aqueous solution within the microscop...
Ion channel proteins play important roles in various cell functions, making them attractive drug tar...
Artificial lipid membranes are widely used as a model system to study single ion channel activity us...
AbstractArtificial lipid membranes are widely used as a model system to study single ion channel act...
Solid-supported lipid bilayers (SLBs) are an ideal model system to study natural cell membranes. The...
The ion flow through channel proteins embedded in a lipid bilayer membrane can be recorded as an ele...
Artificial bilayer containing reconstituted ion channels, transporters and pumps serve as a well-def...
A biological membrane not only forms a protective outer boundary for cells and organelles but also h...
AbstractPlanar lipid bilayers suspended in apertures provide a controlled environment for ion channe...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Recent studies have shown that membrane proteins can be efficiently synthesized in vitro before spon...
<div><p>We present an innovative method to couple electrophysiological measurements with fluorescenc...
We present an innovative method to couple electrophysiological measurements with fluorescence imagin...
AbstractFluorescence interference-contrast (FLIC) microscopy is a powerful new technique to measure ...
We present an innovative method to couple electrophysiological measurements with fluorescence imagin...