Screening of transport processes across biological membranes is hindered by the challenge to establish fragile supported lipid bilayers and the difficulty to determine at which side of the membrane reactants reside. Here, we present a method for the generation of suspended lipid bilayers with physiological relevant lipid compositions on microstructured Si/SiO2 chips that allow for high-throughput screening of both membrane transport and viral membrane fusion. Simultaneous observation of hundreds of single-membrane channels yields statistical information revealing population heterogeneities of the pore assembly and conductance of the bacterial toxin a-hemolysin (alpha HL). The influence of lipid composition and ionic strength on aHL pore for...
Thanks to their ability to mimic biological membranes and their relative ease to be handled, support...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Screening tools to study antimicrobial peptides (AMPs) with the aim to optimize therapeutic delivery...
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...
59 pagesMembrane biosensors that can rapidly sense pathogen interaction and disrupting agents are ne...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Cell membrane receptors and ion channels are essential in many different cellular processes. To anal...
Membrane proteins are prime drug targets as they control the transit of information, ions, and solut...
We report the formation of POPC lipid bilayers that span 130 nm pores in a freestanding silicon nitr...
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
The study and the exploitation of membrane proteins for drug screening applications requires a contr...
A microfabricated silicon device for studying artificial lipid bilayer systems is described. The exp...
Alpha-hemolysin is a pore-forming toxin secreted by pathogenic Staphylococcus aureus. Its spontaneou...
Thanks to their ability to mimic biological membranes and their relative ease to be handled, support...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Screening tools to study antimicrobial peptides (AMPs) with the aim to optimize therapeutic delivery...
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...
59 pagesMembrane biosensors that can rapidly sense pathogen interaction and disrupting agents are ne...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Cell membrane receptors and ion channels are essential in many different cellular processes. To anal...
Membrane proteins are prime drug targets as they control the transit of information, ions, and solut...
We report the formation of POPC lipid bilayers that span 130 nm pores in a freestanding silicon nitr...
We describe a scalable artificial bilayer lipid membrane platform for rapid electrophysiological scr...
The study and the exploitation of membrane proteins for drug screening applications requires a contr...
A microfabricated silicon device for studying artificial lipid bilayer systems is described. The exp...
Alpha-hemolysin is a pore-forming toxin secreted by pathogenic Staphylococcus aureus. Its spontaneou...
Thanks to their ability to mimic biological membranes and their relative ease to be handled, support...
Gated ion channels are excitable nanopores in biological membranes. They sense and respond to differ...
Screening tools to study antimicrobial peptides (AMPs) with the aim to optimize therapeutic delivery...