The article considers the production of red blood cell “ghosts” and their application as a model for studying Na+, K+ - ATPase. Various variants of liposomes are used as test objects for studying ion transport, but the best model of biological membranes for studying ion transport and ATPase pumps are the «ghosts» of red blood cells. The activity of blood Na+/K+ - ATPase is determined mainly in the suspension of red blood cell “ghosts”. This is due to the need to remove the interfering compound – hemoglobin - and obtain “ghosts” that are necessary for accurate measurement of the activity of the enzyme. In this scientific work, studies were conducted to determine the concentrations of Na+ and K+ ions in the blood and red blood cells of cows a...
This study addresses the mechanisms of oxygen-induced regulation of ion transport pathways in mouse ...
All eukaryotic animal cells have high extracellular sodium and high intracellular potassium, a rever...
Na,K-ATPase (EC, 3.6.1.37, Na,K-ATPase) is a fundamental vital membrane transport and receptor syste...
The article considers the production of red blood cell “ghosts” and their application as a model for...
Background: Studies have shown that Na+-K+ ATPase activity was altered in disrupted red blood cell m...
After identification of the Na,K-ATPase as active ion transporter that maintains the Na+ and K+ conc...
This paper recounts recent uwork concerning the Na aiid K permeability of red blood cells. The discu...
AbstractWe examined the response of Na+,K+-ATPase (NKA) to monensin, a Na+ ionophore, with and witho...
Our aim was to set up and validate a reproducible method to study ATPase family on erythrocyte membr...
Note:The asymmetric interactions of K+ with the (Na +, K +} -ATPase were investigated using inside-o...
and to whom correspondence should be addressed Abstract: The regulation of cellular ion levels has b...
Using fluorescein isothiocyanate-dextran filled inside-out vesicles derived from 4$ sp prime$,4-diis...
It has been shown that the red cell membrane has an active mechanism for transporting Ca++ out of ...
Panels (A) and (B) show the dependence of the relative erythrocyte cell volume on the non-selective ...
Dog red cell membranes contain two distinct volume-sensitive transporters: swelling-activated K-Cl c...
This study addresses the mechanisms of oxygen-induced regulation of ion transport pathways in mouse ...
All eukaryotic animal cells have high extracellular sodium and high intracellular potassium, a rever...
Na,K-ATPase (EC, 3.6.1.37, Na,K-ATPase) is a fundamental vital membrane transport and receptor syste...
The article considers the production of red blood cell “ghosts” and their application as a model for...
Background: Studies have shown that Na+-K+ ATPase activity was altered in disrupted red blood cell m...
After identification of the Na,K-ATPase as active ion transporter that maintains the Na+ and K+ conc...
This paper recounts recent uwork concerning the Na aiid K permeability of red blood cells. The discu...
AbstractWe examined the response of Na+,K+-ATPase (NKA) to monensin, a Na+ ionophore, with and witho...
Our aim was to set up and validate a reproducible method to study ATPase family on erythrocyte membr...
Note:The asymmetric interactions of K+ with the (Na +, K +} -ATPase were investigated using inside-o...
and to whom correspondence should be addressed Abstract: The regulation of cellular ion levels has b...
Using fluorescein isothiocyanate-dextran filled inside-out vesicles derived from 4$ sp prime$,4-diis...
It has been shown that the red cell membrane has an active mechanism for transporting Ca++ out of ...
Panels (A) and (B) show the dependence of the relative erythrocyte cell volume on the non-selective ...
Dog red cell membranes contain two distinct volume-sensitive transporters: swelling-activated K-Cl c...
This study addresses the mechanisms of oxygen-induced regulation of ion transport pathways in mouse ...
All eukaryotic animal cells have high extracellular sodium and high intracellular potassium, a rever...
Na,K-ATPase (EC, 3.6.1.37, Na,K-ATPase) is a fundamental vital membrane transport and receptor syste...