The study and the exploitation of membrane proteins for drug screening applications requires a controllable and reliable method for their delivery into an artificial suspended membrane platform based on lab-on-a-chip technology. In this work, a polymeric device for forming lipid bilayers suitable for electrophysiology studies and biosensor applications is presented. The chip supports a single bilayer and is configured for controlled protein delivery through on-chip microfluidics. In order to demonstrate the principle of protein delivery, the potassium channel KcsA was reconstituted into proteoliposomes, which were then fused with the suspended bilayer on-chip. Fusion of single proteoliposomes with the membrane was identified electrically. S...
Screening of transport processes across biological membranes is hindered by the challenge to establi...
Screening of transport processes across biological membranes is hindered by the challenge to establi...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
The study and the exploitation of membrane proteins for drug screening applications requires a contr...
Functional assays of membrane proteins are becoming increasingly important, both in research and dru...
A microfabricated silicon device for studying artificial lipid bilayer systems is described. The exp...
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
Bilayer Lipid Membranes (BLMs) have been widely used as an experimental tool to investigate fundamen...
Artificially reproducing cellular environments is a key aim of synthetic biology, which has the pote...
Experimentation on cell membranes and on membrane proteins commonly makes use of planar and simplifi...
The study of ion channels and other membrane proteins and their potential use as biosensors and drug...
In recent years, there has been growing interest in creating bio-inspired devices that feature artif...
none3Ion channels are natural nanometric pores formed by proteins across cell membranes. They are re...
59 pagesMembrane biosensors that can rapidly sense pathogen interaction and disrupting agents are ne...
In recent years, protein array technologies have found widespread applications in proteomics. Howeve...
Screening of transport processes across biological membranes is hindered by the challenge to establi...
Screening of transport processes across biological membranes is hindered by the challenge to establi...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...
The study and the exploitation of membrane proteins for drug screening applications requires a contr...
Functional assays of membrane proteins are becoming increasingly important, both in research and dru...
A microfabricated silicon device for studying artificial lipid bilayer systems is described. The exp...
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
Bilayer Lipid Membranes (BLMs) have been widely used as an experimental tool to investigate fundamen...
Artificially reproducing cellular environments is a key aim of synthetic biology, which has the pote...
Experimentation on cell membranes and on membrane proteins commonly makes use of planar and simplifi...
The study of ion channels and other membrane proteins and their potential use as biosensors and drug...
In recent years, there has been growing interest in creating bio-inspired devices that feature artif...
none3Ion channels are natural nanometric pores formed by proteins across cell membranes. They are re...
59 pagesMembrane biosensors that can rapidly sense pathogen interaction and disrupting agents are ne...
In recent years, protein array technologies have found widespread applications in proteomics. Howeve...
Screening of transport processes across biological membranes is hindered by the challenge to establi...
Screening of transport processes across biological membranes is hindered by the challenge to establi...
We describe a system that provides a rapid and simple way of forming suspended lipid bilayers within...