Handbooks of physiology state that the strategy adopted by red blood cells (RBCs) to preserve cell volume is to maintain membrane permeability for cations at its minimum. However, enhanced cation permeability can be measured and observed in specific physiological and pathophysiological situations such as in vivo senescence, storage at low temperature, sickle cell anemia and many other genetic defects affecting transporters, membrane or cytoskeletal proteins. Among cation pathways, cation channels are able to dissipate rapidly the gradients that are built and maintained by the sodium and calcium pumps. These situations are very well-documented but a mechanistic understanding of complex electrophysiological events underlying ion transports is...
Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane proteins of un...
Chloride channels of the ClC family are important for the control of membrane excitability, cell vol...
<p><b>A</b>. The bipolar cell membrane potential was adjusted to close to −45 mV with a steady hyper...
International audienceHandbooks of physiology state that the strategy adopted by red blood cells (RB...
Red cell membranes are endowed with several ion channels. Normally silent, they will rapidly dissipa...
AbstractUsing the patch-clamp technique, a non-selective voltage-activated Na+ and K+ channel in the...
Synthetic ion channels are of great interest in mimicking the biological functions of natural ion ch...
AbstractHuman platelets were studied by patch clamp recordings from inside-out membranes; these were...
Background/Aims: In the human genome, more than 400 genes encode ion channels, which are ubiquitousl...
The permeability of the neuronal membrane to different ions determines both resting membrane potenti...
Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane proteins of un...
Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane proteins of un...
<div><p>Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane protei...
Chloride channels of the ClC family are important for the control of membrane excitability, cell vol...
Chloride channels of the ClC family are important for the control of membrane excitability, cell vol...
Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane proteins of un...
Chloride channels of the ClC family are important for the control of membrane excitability, cell vol...
<p><b>A</b>. The bipolar cell membrane potential was adjusted to close to −45 mV with a steady hyper...
International audienceHandbooks of physiology state that the strategy adopted by red blood cells (RB...
Red cell membranes are endowed with several ion channels. Normally silent, they will rapidly dissipa...
AbstractUsing the patch-clamp technique, a non-selective voltage-activated Na+ and K+ channel in the...
Synthetic ion channels are of great interest in mimicking the biological functions of natural ion ch...
AbstractHuman platelets were studied by patch clamp recordings from inside-out membranes; these were...
Background/Aims: In the human genome, more than 400 genes encode ion channels, which are ubiquitousl...
The permeability of the neuronal membrane to different ions determines both resting membrane potenti...
Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane proteins of un...
Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane proteins of un...
<div><p>Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane protei...
Chloride channels of the ClC family are important for the control of membrane excitability, cell vol...
Chloride channels of the ClC family are important for the control of membrane excitability, cell vol...
Calcium-activated chloride channels (CaCC) encoded by family members of transmembrane proteins of un...
Chloride channels of the ClC family are important for the control of membrane excitability, cell vol...
<p><b>A</b>. The bipolar cell membrane potential was adjusted to close to −45 mV with a steady hyper...