Key result
Quinidine decreases the affinity of cardiac glycoside receptor sites on purified Na,K-ATPase and intact human erythrocyte membranes for digoxin in vitro.
Why the study?
Does quinidine alter the binding affinity and inhibitory effect of digoxin on Na,K-ATPase in vitro?
Does quinidine alter the binding affinity and inhibitory effect of digoxin on Na,K-ATPase in vitro?
Quinidine decreases the affinity of tissue receptors for digoxin in vitro, providing a potential mechanistic explanation for the clinically observed increases in serum digoxin concentrations when quinidine is co-administered.
Supports mechanistic basis for quinidine-digoxin interaction; hypothesis-generating for in vivo relevance and dosing.
To investigate the basis for a clinically important digitalis-quinidine interaction that is characterized by increases in serums digoxin concentrations when quinidine is administered to digoxin-treated patients, we have studied in vitro the interaction of quinidine with the digoxin receptor. Evidence has been obtained that quinidine is capable of decreasing the affinity for digoxin of cardiac glycoside receptor sites on purified Na,K-ATPase and on intact human erythrocyte membranes. As others have shown, quinidine is capable of inhibiting Na,K-ATPase activity, and evidence has been obtained in the current study that, while quinidine can reduce the affinity of the enzyme for digoxin, it is also capable of acting together with digoxin in inhibiting enzyme activity to a degree greater than the inhibitory effect of digoxin alone. The concentrations of digoxin and quinidine used in this study were considerably greater than their therapeutic serum concentrations. Nevertheless, these observations are consistent with the hypothesis that the increases in serum digoxin concentrations and the decreases in volumes of digoxin distribution observed clinically when quinidine is administered to digoxin-treated patients may reflect, at least in part, a decrease in the affinity of tissue receptors for digoxin. The possibility must also be considered that enhanced cardiac effects of digoxin may occur clinically as the result of an augmentation, by quinidine, of digoxin effects, which more than compensates for the modest reduction in digoxin binding.
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Ball et al. (1981) studied this question. Quinidine vs. Absence of quinidine was evaluated on Affinity of cardiac glycoside receptor sites for digoxin. Quinidine decreases the affinity of cardiac glycoside receptor sites on purified Na,K-ATPase and intact human erythrocyte membranes for digoxin in vitro.
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