The electrical potential difference across the human red cell membrane has been measured directly. A biological amplifier with neutralized input capacity was used. Human red cells in modified Ringer solution were impaled individually with 3 M KCl-filled glass microelectrodes. Movements of the microelectrodes were effected by Leitz micromanipulators. Results showed a potential difference of -8.0±0.21 (SEM) mv, the inside being negative with respect to the outside. This value is approximately that calculated by using the Nernst equation considering the intracellular and extracellular chloride concentrations.As a control, similar measurements were made on nylon microcapsules containing hemoglobin. The measured potential of -0.52±0.02 (SEM) mv,...
AbstractRatiometric imaging of styryl potentiometric dyes can be used to measure the potential gradi...
A microsensor that can continuously measure the deformability of a single red blood cell (RBC) in it...
The resonance energy transfer from donors embedded in the membrane of erythrocytes to the cytosol he...
The electrical potential difference across the human red cell membrane has been measured directly. A...
The plasma membrane functions both as a natural insulator and a diffusion barrier to the movement of...
Background/Aims: In a variety of investigations described in the literature it was not clear to what...
Red blood cell membrane exhibits a large resistance to changes in surface area. This resistance is c...
Red blood cell membrane exhibits a large resistance to changes in surface area. This resistance is c...
Altered external pH transforms human erythrocytes from discocytes to stomatocytes (low pH) or echino...
The red blood cell (RBC) viscoelastic membrane contains proteins and glycolproteins embedded in, or ...
Microelectrode penetration of small cells leads to a sustained depolarization of the resting membran...
Exposure of the inner surface of intact red cells or red cell ghosts to Ca2+ evokes unitary currents...
AbstractHuman red blood cells (RBC) can be studied by means of whole-cell and nystatin-perforated pa...
With human and bovine red blood cells and Escherichia coli B, dielectric breakdown of cell membranes...
The sucrose gap technique, though widely employed in many tissues, could not be used for quantitativ...
AbstractRatiometric imaging of styryl potentiometric dyes can be used to measure the potential gradi...
A microsensor that can continuously measure the deformability of a single red blood cell (RBC) in it...
The resonance energy transfer from donors embedded in the membrane of erythrocytes to the cytosol he...
The electrical potential difference across the human red cell membrane has been measured directly. A...
The plasma membrane functions both as a natural insulator and a diffusion barrier to the movement of...
Background/Aims: In a variety of investigations described in the literature it was not clear to what...
Red blood cell membrane exhibits a large resistance to changes in surface area. This resistance is c...
Red blood cell membrane exhibits a large resistance to changes in surface area. This resistance is c...
Altered external pH transforms human erythrocytes from discocytes to stomatocytes (low pH) or echino...
The red blood cell (RBC) viscoelastic membrane contains proteins and glycolproteins embedded in, or ...
Microelectrode penetration of small cells leads to a sustained depolarization of the resting membran...
Exposure of the inner surface of intact red cells or red cell ghosts to Ca2+ evokes unitary currents...
AbstractHuman red blood cells (RBC) can be studied by means of whole-cell and nystatin-perforated pa...
With human and bovine red blood cells and Escherichia coli B, dielectric breakdown of cell membranes...
The sucrose gap technique, though widely employed in many tissues, could not be used for quantitativ...
AbstractRatiometric imaging of styryl potentiometric dyes can be used to measure the potential gradi...
A microsensor that can continuously measure the deformability of a single red blood cell (RBC) in it...
The resonance energy transfer from donors embedded in the membrane of erythrocytes to the cytosol he...