AbstractPlanar lipid bilayers suspended in apertures provide a controlled environment for ion channel studies. However, short lifetimes and poor mechanical stability of suspended bilayers limit the experimental throughput of bilayer electrophysiology experiments. Although bilayers are more stable in smaller apertures, ion channel incorporation through vesicle fusion with the suspended bilayer becomes increasingly difficult. In an alternative bilayer stabilization approach, we have developed shaped apertures in SU8 photoresist that have tapered sidewalls and a minimum diameter between 60 and 100 μm. Bilayers formed at the thin tip of these shaped apertures, either with the painting or the folding method, display drastically increased lifetim...
A planar lipid bilayer which is widely used for the electrophysiological study of membrane proteins ...
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...
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...
Planar lipid bilayers constitute a versatile method for measuring the activity of protein channels a...
The ion flow through channel proteins embedded in a lipid bilayer membrane can be recorded as an ele...
Suspended lipid bilayers, or black lipid membranes (BLMs), have been used to study the electrophysio...
i The purpose of this study is to demonstrate that stable lipid bilayers can be set up on an array o...
Robust and high-density biosensors incorporating suspended lipid membranes require microfabricated a...
Painted bilayers containing reconstituted ion channels serve as a well defined model system for elec...
Ion channels play key roles in functions and dysfunctions of all cells. Single channel recording m...
We describe two enhancements of the planar bilayer recording method which enable low-noise recording...
We report a simple, cost-effective, and reproducible method to form free-standing lipid bilayer memb...
A mercury-supported bilayer lipid micromembrane was prepared by anchoring a thiolipid monolayer to a...
A planar lipid bilayer which is widely used for the electrophysiological study of membrane proteins ...
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...
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...
Planar lipid bilayers constitute a versatile method for measuring the activity of protein channels a...
The ion flow through channel proteins embedded in a lipid bilayer membrane can be recorded as an ele...
Suspended lipid bilayers, or black lipid membranes (BLMs), have been used to study the electrophysio...
i The purpose of this study is to demonstrate that stable lipid bilayers can be set up on an array o...
Robust and high-density biosensors incorporating suspended lipid membranes require microfabricated a...
Painted bilayers containing reconstituted ion channels serve as a well defined model system for elec...
Ion channels play key roles in functions and dysfunctions of all cells. Single channel recording m...
We describe two enhancements of the planar bilayer recording method which enable low-noise recording...
We report a simple, cost-effective, and reproducible method to form free-standing lipid bilayer memb...
A mercury-supported bilayer lipid micromembrane was prepared by anchoring a thiolipid monolayer to a...
A planar lipid bilayer which is widely used for the electrophysiological study of membrane proteins ...
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...