Ion channels are natural nanometric pores formed by proteins across cell membranes. They are responsible of part of cell signaling and a large part of pharmaceutical compounds are interacting with them. Therefore, single ion channel screening is being proposed as a fundamental technique for investigating the function of cell membrane proteins with pharmaceutical compounds. The technique consisting in embedding ion channels in artificial bilayer lipid membranes (BLM) is gaining attention over patch clamp approach due to its characteristics of performing parallel tests over selected classes of channels. However, no valid procedures for automatic formation and real time monitoring of BLM arrays have been presented so far. More specifically, si...
Bilayer Lipid Membranes (BLMs) have been widely used as an experimental tool to investigate fundamen...
Membrane-bound ion channels are promising biological receptors since they allow for the stochastic d...
Tethered bilayer lipid membranes (tBLMs) provide a model platform for the investigation ofvarious me...
Ion channels are natural nanometric pores formed by proteins across cell membranes. They are respons...
Ion channels are transmembrane proteins responsible of cell signaling and a large part of pharmaceut...
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
none5Different electrophysiology setups allow single ion channel recordings using Lipid Bilayer Memb...
A microfabricated silicon device for studying artificial lipid bilayer systems is described. The exp...
Cell membranes form a natural protective boundary around cells and their organelles. Ion channels ho...
In recent years, protein array technologies have found widespread applications in proteomics. Howeve...
The ties that bind. A biosensor based on modulation of single ion-channel activity, with the ability...
Droplet lipid bilayers have been shown to be robust platforms for studying membrane proteins in a hi...
Artificial lipid bilayer technologies are effective models for studying cell membrane properties. Dr...
Bilayer lipid membranes (BLMs) are excellent platforms to study ion channels in a functional environ...
The ion flow through channel proteins embedded in a lipid bilayer membrane can be recorded as an ele...
Bilayer Lipid Membranes (BLMs) have been widely used as an experimental tool to investigate fundamen...
Membrane-bound ion channels are promising biological receptors since they allow for the stochastic d...
Tethered bilayer lipid membranes (tBLMs) provide a model platform for the investigation ofvarious me...
Ion channels are natural nanometric pores formed by proteins across cell membranes. They are respons...
Ion channels are transmembrane proteins responsible of cell signaling and a large part of pharmaceut...
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
none5Different electrophysiology setups allow single ion channel recordings using Lipid Bilayer Memb...
A microfabricated silicon device for studying artificial lipid bilayer systems is described. The exp...
Cell membranes form a natural protective boundary around cells and their organelles. Ion channels ho...
In recent years, protein array technologies have found widespread applications in proteomics. Howeve...
The ties that bind. A biosensor based on modulation of single ion-channel activity, with the ability...
Droplet lipid bilayers have been shown to be robust platforms for studying membrane proteins in a hi...
Artificial lipid bilayer technologies are effective models for studying cell membrane properties. Dr...
Bilayer lipid membranes (BLMs) are excellent platforms to study ion channels in a functional environ...
The ion flow through channel proteins embedded in a lipid bilayer membrane can be recorded as an ele...
Bilayer Lipid Membranes (BLMs) have been widely used as an experimental tool to investigate fundamen...
Membrane-bound ion channels are promising biological receptors since they allow for the stochastic d...
Tethered bilayer lipid membranes (tBLMs) provide a model platform for the investigation ofvarious me...