AbstractInterpreting channel behavior in patches requires an understanding of patch structure and dynamics, especially in studies of mechanosensitive channels. High resolution optical studies show that patch formation occurs via blebbing that disrupts normal membrane structure and redistributes in situ components including ion channels. There is a 1–2 μm region of the seal below the patch where proteins are excluded and this may consist of extracted lipids that form the gigaseal. Patch domes often have complex geometries with inhomogeneous stresses due to the membrane-glass adhesion energy (Ea), cytoskeletal forces, and possible lipid subdomains. The resting tension in the patch dome ranges from 1–4 mN/m, a significant fraction of the lytic...
AbstractPatch-clamp recording has revolutionized the study of ion channels, transporters, and the el...
<p>Patch-clamp single-channel recordings of red blood cell spontaneous membrane electrical activity ...
The details of conformational changes undergone by transmembrane ion channels in response to stimuli...
AbstractInterpreting channel behavior in patches requires an understanding of patch structure and dy...
ABSTRACT: Patch clamping depends on a tight seal between the cell membrane and the glass of the pipe...
Electrophysiology is a central tool for measuring how different driving forces (e.g., ligand concent...
Membrane patches from chick skeletal muscle were stretched by applying controlled suction or pressur...
Lipid bilayers of cellular membranes play a key role in modulation of membrane proteins, particularl...
Mechanosensitive (MS) channels are ubiquitous molecular force sensors that respond to a number of di...
AbstractThe ability to form gigaseals is essential for patch-clamp electrophysiology; however, ion c...
144 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.Mechanosensitive channels are...
AbstractThis study aims to explore gating mechanisms of mechanosensitive channels in terms of membra...
Gigaohm seals made between patch pipettes and hydrophobic substrates have a finite conductance which...
<div><p>The mechanosensitive channel of large conductance (MscL) is capable of transducing mechanica...
Free to read Mechanosensitive (MS) channels of small (MscS) and large (MscL) conductance are the maj...
AbstractPatch-clamp recording has revolutionized the study of ion channels, transporters, and the el...
<p>Patch-clamp single-channel recordings of red blood cell spontaneous membrane electrical activity ...
The details of conformational changes undergone by transmembrane ion channels in response to stimuli...
AbstractInterpreting channel behavior in patches requires an understanding of patch structure and dy...
ABSTRACT: Patch clamping depends on a tight seal between the cell membrane and the glass of the pipe...
Electrophysiology is a central tool for measuring how different driving forces (e.g., ligand concent...
Membrane patches from chick skeletal muscle were stretched by applying controlled suction or pressur...
Lipid bilayers of cellular membranes play a key role in modulation of membrane proteins, particularl...
Mechanosensitive (MS) channels are ubiquitous molecular force sensors that respond to a number of di...
AbstractThe ability to form gigaseals is essential for patch-clamp electrophysiology; however, ion c...
144 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.Mechanosensitive channels are...
AbstractThis study aims to explore gating mechanisms of mechanosensitive channels in terms of membra...
Gigaohm seals made between patch pipettes and hydrophobic substrates have a finite conductance which...
<div><p>The mechanosensitive channel of large conductance (MscL) is capable of transducing mechanica...
Free to read Mechanosensitive (MS) channels of small (MscS) and large (MscL) conductance are the maj...
AbstractPatch-clamp recording has revolutionized the study of ion channels, transporters, and the el...
<p>Patch-clamp single-channel recordings of red blood cell spontaneous membrane electrical activity ...
The details of conformational changes undergone by transmembrane ion channels in response to stimuli...