It is now generally agreed that Na+−K+adenosine triphosphatase (ATPase), a transport enzyme derived from the sarcolemmal sodium pump, is the primary site at which digitalis exerts its effects on the myocardial cell. Inhibition of the ability of this ion transport enzyme to catalyze Na+efflux from the cell in exchange for K+leads to both the therapeutic and toxic effects of the cardiac glycosides. The mechanism by which digitalis inhibits the sodium pump has been established in studies of Na+−K+ATPase which shpw that the ability of cardiac glycosides to inhibit adenosine triphosphate (ATP)-supported transport of Na+is reduced in the presence of elevated levels of K+. These studies explain the ability of hypokalemia to potentiate the effects ...
Na+/K(+)ATPase is a transport membrane protein which contains the functional receptor for digitalis ...
Inhibition of Na,K-ATPase activity by cardiac glyco-sides is believed to be the major mechanism by w...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...
It is now generally agreed that Na+−K+adenosine triphosphatase (ATPase), a transport enzyme derived ...
It has long been known that cardiac glycosides can inhibit the membrane sodium-potassium (Na+-K+) pu...
It has long been known that cardiac glycosides can inhibit the membrane sodium-potassium (Na+-K+) pu...
Effects of cardiac glycosides on sodium pump expression and function in LLC-PK1 and MDCK cells.Backg...
The control of intracellular Na levels has long beenknown to be a crucial part of the regulation of...
Background: The decreases in proximal tubule sodium reabsorption seen with chronic renal failure and...
Inhibition by cardiac glycosides of Na(+), K(+)-ATPase reduces sodium efflux from myocytes and may l...
It is over 200 years since William Hithering published his famous treatise on the use of the foxglov...
Effects of cardiac glycosides on sodium pump expression and function in LLC-PK1 and MDCK cells.Backg...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...
The activity of the transport ATPase, responsible for the active transport of the monovalent cations...
Na+/K(+)ATPase is a transport membrane protein which contains the functional receptor for digitalis ...
Inhibition of Na,K-ATPase activity by cardiac glyco-sides is believed to be the major mechanism by w...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...
It is now generally agreed that Na+−K+adenosine triphosphatase (ATPase), a transport enzyme derived ...
It has long been known that cardiac glycosides can inhibit the membrane sodium-potassium (Na+-K+) pu...
It has long been known that cardiac glycosides can inhibit the membrane sodium-potassium (Na+-K+) pu...
Effects of cardiac glycosides on sodium pump expression and function in LLC-PK1 and MDCK cells.Backg...
The control of intracellular Na levels has long beenknown to be a crucial part of the regulation of...
Background: The decreases in proximal tubule sodium reabsorption seen with chronic renal failure and...
Inhibition by cardiac glycosides of Na(+), K(+)-ATPase reduces sodium efflux from myocytes and may l...
It is over 200 years since William Hithering published his famous treatise on the use of the foxglov...
Effects of cardiac glycosides on sodium pump expression and function in LLC-PK1 and MDCK cells.Backg...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...
The activity of the transport ATPase, responsible for the active transport of the monovalent cations...
Na+/K(+)ATPase is a transport membrane protein which contains the functional receptor for digitalis ...
Inhibition of Na,K-ATPase activity by cardiac glyco-sides is believed to be the major mechanism by w...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...