The effect of drugs with ion channel-blocking activity on the early embryonic rat heart
Dominique Abela1, Helen Ritchie, Deena Ababneh
1Department of Anatomy and Histology, Sydney Medical School, University of Sydney, Sydney, Australia.
Abstract:
This study investigated the effects of a range of pharmaceutical drugs with ion channel-blocking activity on the heart of gestation day 13 rat embryos in vitro. The general hypothesis was that the blockade of the I(Kr)/hERG channel, that is highly important for the normal functioning of the embryonic rat heart, would cause bradycardia and arrhythmia. Concomitant blockade of other channels was expected to modify the effects of hERG blockade. Fourteen drugs with varying degrees of specificity and affinity toward potassium, sodium, and calcium channels were tested over a range of concentrations. The rat embryos were maintained for 2 hr in culture, 1 hr to acclimatize, and 1 hr to test the effect of the drug. All the drugs caused a concentration-dependent bradycardia except nifedipine, which primarily caused a negative inotropic effect eventually stopping the heart. A number of drugs induced arrhythmias and these appeared to be related to either sodium channel blockade, which resulted in a double atrial beat for each ventricular beat, or I(Kr)/hERG blockade, which caused irregular atrial and ventricular beats. However, it is difficult to make a precise prediction of the effect of a drug on the embryonic heart just by looking at the polypharmacological action on ion channels. The results indicate that the use of the tested drugs during pregnancy could potentially damage the embryo by causing periods of hypoxia. In general, the effects on the embryonic heart were only seen at concentrations greater than those likely to occur with normal therapeutic dosing.
Insights
Pharmaceutical drugs blocking ion channels can harm embryonic rat hearts, causing bradycardia and arrhythmia. Effects were observed at higher concentrations, suggesting potential risks during pregnancy.
Area of Science:
- Pharmacology
- Developmental Biology
- Cardiovascular Research
Background:
- The I(Kr)/hERG channel is crucial for normal embryonic heart function.
- Pharmaceuticals with ion channel-blocking activity may pose risks to developing fetuses.
Purpose of the Study:
- To investigate the in vitro effects of ion channel-blocking drugs on embryonic rat hearts.
- To determine if hERG channel blockade causes bradycardia and arrhythmia in embryonic hearts.
- To assess how blocking other ion channels modifies hERG blockade effects.
Main Methods:
- Cultured gestation day 13 rat embryos were exposed to 14 different drugs.
- Drugs were tested at various concentrations over a 1-hour period.
- Heart rate, rhythm, and contractility were monitored.
Main Results:
- Most drugs induced concentration-dependent bradycardia; nifedipine caused cardiac arrest.
- Arrhythmias, including double atrial beats and irregular rhythms, were observed.
- hERG channel blockade was linked to irregular atrial and ventricular beats.
Conclusions:
- Drug effects on embryonic hearts are complex and difficult to predict solely from ion channel activity.
- Potential for drug-induced embryonic hypoxia exists, particularly at higher concentrations.
- Observed effects generally occurred at concentrations exceeding typical therapeutic levels.
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