Key result
Conventional antihistamines prolong QT intervals up to ~50% in isolated feline hearts.
Why the study?
Do conventional antihistamines slow cardiac repolarization in an isolated perfused feline heart model?
Do conventional antihistamines slow cardiac repolarization in an isolated perfused feline heart model?
Conventional antihistamines directly slow cardiac repolarization in a dose-dependent manner, highlighting a potential arrhythmia risk at excessive dosages.
May signal high-dose QT risk in humans; leaves open clinical translation and arrhythmia relevance.
We examined the effects of "conventional" antihistamines on cardiac repolarization by using the isolated perfused feline heart model. Representative drugs from the major classes of antihistamines were tested. Each of the antihistamines evaluated in this study elicited a dose-dependent slowing of cardiac repolarization, as indicated by the QT prolongations observed from electrocardiogram (ECG) tracings recorded during these experiments. The concentrations of drugs tested ranged from 1 to 30 microM. Of the drugs analyzed, clemastine and hydroxyzine appeared to be the most potent (relative EC50 values, 5.2 and 6.6 microM, respectively), causing the QT to lengthen by as much as 40-50% at a concentration of 10 microM. Brompheniramine, chlorpheniramine, and diphenhydramine displayed intermediate potencies with respect to QT prolongation (relative EC50 values, 11-13 microM), whereas cyproheptadine, chlorcyclizine, and promethazine were the least potent of the antihistamines tested (relative EC50 values, 16-20 microM). It is concluded that the antihistamines evaluated in this study act directly on the heart to slow cardiac repolarization. These findings could have important clinical relevance for patients taking excessive dosages of conventional antihistamines and those at risk of developing cardiac arrhythmias.
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Wang et al. (1998) studied this question. Conventional antihistamines was evaluated on Cardiac repolarization (QT prolongation). Conventional antihistamines elicited a dose-dependent slowing of cardiac repolarization in isolated feline hearts, with clemastine and hydroxyzine causing up to 40-50% QT lengthening at 10 microM.
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