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Updated: Jan 3, 2026

Using Chicken Embryo as a Powerful Tool in Assessment of Developmental Cardiotoxicities
Published on: March 21, 2021
Heart rate changes mediate the embryotoxic effect of antiarrhythmic drugs in the chick embryo
Radka Kockova1, Jarmila Svatunkova, Jiri Novotny
1Academy of Sciences of the Czech Republic, Institute of Physiology, Prague, Czech Republic. radka.kockova@ikem.cz
Abstract:
A significant increase in cardiovascular medication use during pregnancy occurred in recent years. Only limited evidence on safety profiles is available, and little is known about the mechanisms of adverse effect on the fetus. We hypothesized that drug-induced bradycardia is the leading mechanism of developmental toxicity. Embryotoxicity was tested in ovo after administration of various doses of metoprolol, carvedilol, or ivabradine. Embryonic day (ED) 4 and 8 chick embryos were studied by video microscopy and ultrasound biomicroscopy ex ovo after intraamniotic injection of the drug for a period of 30 min. Stroke volume was calculated by the Simpson method and prolate ellipsoid formula. Significant dose-dependent mortality was achieved in embryos injected with carvedilol and ivabradine. In ED4 embryos, metoprolol, carvedilol, and ivabradine reduced the heart rate by 33%, 27%, and 55%, respectively, compared with controls (6%). In ED8 embryos this effect was more pronounced with a heart rate reduction by 71%, 54%, and 53%, respectively (controls, 36%). Cardiac output decreased in all tested groups but only proved significant in the metoprolol group in ED8 embryos. The number of β-adrenergic receptors showed a downward tendency during embryonic development. A negative chronotropic effect of metoprolol, carvedilol, and ivabradine was increasingly pronounced with embryonic maturity despite a downward trend in the number of β-adrenergic receptors. This effect was associated with reduced cardiac output in chick embryos, probably leading to premature death. Although standard doses of these drugs appear relatively safe, high doses have a potentially adverse effect on the fetus through reduced heart rate.
Insights
Cardiovascular drug use in pregnancy is rising. High doses of metoprolol, carvedilol, and ivabradine can cause bradycardia (slow heart rate) and reduce cardiac output in developing embryos, potentially leading to toxicity.
Area of Science:
- Pharmacology
- Developmental Biology
- Cardiovascular Science
Background:
- Increased use of cardiovascular medications during pregnancy necessitates understanding fetal safety.
- Limited data exists on the mechanisms of adverse fetal effects from these drugs.
Purpose of the Study:
- To investigate the hypothesis that drug-induced bradycardia is a primary mechanism of developmental toxicity.
- To assess the embryotoxic effects of metoprolol, carvedilol, and ivabradine in ovo.
Main Methods:
- Chick embryos (Embryonic Day 4 and 8) were studied using video and ultrasound biomicroscopy after intraamniotic drug injection.
- Heart rate, stroke volume, and cardiac output were measured.
- Dose-dependent mortality and drug effects were analyzed.
Main Results:
- Carvedilol and ivabradine caused significant dose-dependent mortality.
- Metoprolol, carvedilol, and ivabradine markedly reduced embryonic heart rate, with effects increasing with developmental maturity.
- Cardiac output decreased significantly in metoprolol-treated ED8 embryos.
Conclusions:
- Drug-induced bradycardia and reduced cardiac output are potential mechanisms for developmental toxicity in embryos exposed to high doses of these cardiovascular drugs.
- While standard doses may be relatively safe, high doses pose a risk to fetal development.
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