Folic acid prevents functional and structural heart defects induced by prenatal ethanol exposure

Stephanie M Ford1,2, Cameron J Pedersen3, Matthew R Ford4

  • 1Division of Neonatology, Department of Pediatrics, Rainbow Babies and Children's Hospital, Case Western Reserve University School of Medicine, Cleveland, Ohio.

Insights

Prenatal alcohol exposure causes heart defects by altering blood flow and endocardial cushions. Folic acid (FA) partially improved these defects in quail embryos, highlighting early supplementation benefits.

Area of Science:

  • Developmental Biology
  • Cardiovascular Research
  • Teratology

Background:

  • Congenital heart diseases (CHDs) are linked to abnormal blood flow and endocardial cushion development.
  • Prenatal alcohol exposure (PAE) is a known cause of CHDs, affecting early cardiovascular development.
  • Folic acid (FA) is recognized for preventing neural tube defects, but its role in mitigating PAE-induced cardiac anomalies requires further investigation.

Purpose of the Study:

  • To investigate the effects of PAE and FA supplementation on embryonic cardiac blood flow and endocardial cushion morphology.
  • To quantify regurgitant blood flow and endocardial cushion volumes in quail embryos exposed to ethanol and/or FA.
  • To assess the impact of PAE and FA on embryonic development, including body curvature and heart rate.

Main Methods:

  • Binge drinking model using quail embryos at the gastrulation stage.
  • Exposure to ethanol, FA (3.2 μg/egg), or both simultaneously.
  • Quantification of regurgitant blood flow using Doppler optical coherence tomography (OCT).
  • Measurement of endocardial cushion volumes and assessment of body curvature and heart rate via OCT imaging.

Main Results:

  • Ethanol exposure significantly increased regurgitant blood flow and reduced endocardial cushion volumes in quail embryos.
  • FA supplementation concurrently with ethanol partially reduced regurgitant blood flow and improved endocardial cushion size, but did not fully restore them to control levels.
  • FA partially alleviated PAE-induced abnormal body curvature and cardiovascular function, but did not completely prevent defects.

Conclusions:

  • Early embryonic exposure to ethanol disrupts cardiac hemodynamics and endocardial cushion development, contributing to CHDs.
  • Folic acid supplementation demonstrates a partial protective effect against PAE-induced cardiovascular defects in an embryonic model.
  • These findings underscore the importance of early folic acid supplementation during pregnancy for preventing both neural tube and heart defects.