We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and their electrical conductance in lipid bilayers. Nanopores were produced in microfabricated silicon membranes by electron beam lithography as well as by using a finely focused ion beam. Thermal oxide was used to shrink pore sizes, if necessary, and to create an insulating surface. The chips with well-defined pores were easily mounted on a double-chamber plastic cell recording system, allowing for controlling the buffer conditions both above and below the window. The double-chamber system allowed using an atomic force microscopy (AFM) tip as one electrode and inserting a platinum wire as the second electrode under the membrane window, to measu...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
A microfabricated silicon device for studying artificial lipid bilayer systems is described. The exp...
Painted bilayers containing reconstituted ion channels serve as a well defined model system for elec...
Painted bilayers containing reconstituted ion channels serve as a well defined model system for elec...
Painted bilayers containing reconstituted ion channels serve as a well defined model system for elec...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Biological membranes contain ion channels, which are nanoscale pores allowing controlled ionic trans...
AbstractPainted bilayers containing reconstituted ion channels serve as a well defined model system ...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
A microfabricated silicon device for studying artificial lipid bilayer systems is described. The exp...
Painted bilayers containing reconstituted ion channels serve as a well defined model system for elec...
Painted bilayers containing reconstituted ion channels serve as a well defined model system for elec...
Painted bilayers containing reconstituted ion channels serve as a well defined model system for elec...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Biological membranes contain ion channels, which are nanoscale pores allowing controlled ionic trans...
AbstractPainted bilayers containing reconstituted ion channels serve as a well defined model system ...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
International audienceWe present a new strategy for fabricating a silicon nanopore device allowing s...
Ion channels are membrane proteins responsible for ion transport across biological membranes. Due to...