Single-channel conductance measurements in biological pores have demonstrated the importance of interfacial effects in nanopores, particularly in protein channels with low aspect ratio (length over aperture radius). Access resistance (AR), the contribution to the total measured resistance arising from the electrodiffusive limitation that ions experience in passing from bulk solution to confinement within the pore, becomes essential in the description of ionic transport across these biological channels. Common analytical estimates of AR are based on idealized nanopore models, cylindrical in shape, electrically neutral and embedded in a neutral substrate. Here we calculate the AR of five protein channels by using their atomic structure and a ...
Adsorption processes are central to ionic transport in industrial and biological membrane systems. M...
Ion channels are part of nature???s solution for regulating biological environments. Every ion chann...
AbstractDuring release of vesicular content the resistance of the fusion pore sometimes changes rapi...
Single-channel conductance measurements in biological pores have demonstrated the importance of inte...
Synthetic nanopores and mesoscopic protein channels have common traits like the importance of electr...
AbstractNanometer-scale proteinaceous pores are the basis of ion and macromolecular transport in cel...
Nanoscopic pores in biological systems – cells, for example – are responsible for regulating the tra...
Ion channels are pore-forming proteins that regulate the flow of ions across biological cell membran...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
The transport of molecules through nanoscale confined space is relevant in biology, biosensing, and ...
Ionic conductance in membrane channels exhibits a power-law dependence on electrolyte concentration...
Protein and solid-state nanometer-scale pores are being developed for the detection, analysis, and m...
Ion channels are hollow proteins that have evolved to exhibit discrimination between charged solutes...
Despite the broad success of biological nanopores as powerful instruments for the analysis of protei...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
Adsorption processes are central to ionic transport in industrial and biological membrane systems. M...
Ion channels are part of nature???s solution for regulating biological environments. Every ion chann...
AbstractDuring release of vesicular content the resistance of the fusion pore sometimes changes rapi...
Single-channel conductance measurements in biological pores have demonstrated the importance of inte...
Synthetic nanopores and mesoscopic protein channels have common traits like the importance of electr...
AbstractNanometer-scale proteinaceous pores are the basis of ion and macromolecular transport in cel...
Nanoscopic pores in biological systems – cells, for example – are responsible for regulating the tra...
Ion channels are pore-forming proteins that regulate the flow of ions across biological cell membran...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
The transport of molecules through nanoscale confined space is relevant in biology, biosensing, and ...
Ionic conductance in membrane channels exhibits a power-law dependence on electrolyte concentration...
Protein and solid-state nanometer-scale pores are being developed for the detection, analysis, and m...
Ion channels are hollow proteins that have evolved to exhibit discrimination between charged solutes...
Despite the broad success of biological nanopores as powerful instruments for the analysis of protei...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
Adsorption processes are central to ionic transport in industrial and biological membrane systems. M...
Ion channels are part of nature???s solution for regulating biological environments. Every ion chann...
AbstractDuring release of vesicular content the resistance of the fusion pore sometimes changes rapi...