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Moderate Prenatal Alcohol Exposure and Quantification of Social Behavior in Adult Rats
Published on: December 14, 2014
Prenatal choline supplementation mitigates the adverse effects of prenatal alcohol exposure on development in rats
Jennifer D Thomas1, Elizabeth J Abou, Hector D Dominguez
1Department of Psychology, Center for Behavioral Teratology, San Diego State University, San Diego, CA 92120, USA. thomas3@mail.sdsu.edu
Insights
Prenatal choline supplementation significantly reduced the negative physical and behavioral effects of alcohol exposure in animal models. This essential nutrient may mitigate some fetal alcohol spectrum disorder (FASD) outcomes.
Area of Science:
- Neuroscience
- Developmental Biology
- Nutritional Science
Background:
- Prenatal alcohol exposure causes fetal alcohol spectrum disorders (FASD), with outcomes varying due to factors like nutrition.
- Choline is vital for brain development and has shown cognitive benefits in animal studies.
Purpose of the Study:
- To investigate if choline supplementation during ethanol exposure can reduce alcohol's detrimental effects on fetal development.
Main Methods:
- Pregnant dams received ethanol, pair-fed, or control diets, with some receiving choline chloride supplementation.
- Physical development (birth weight, incisor emergence) and behavioral development (reflexes, coordination) were assessed.
Main Results:
- Alcohol-exposed subjects showed reduced birth/brain weight, delayed development, and behavioral deficits.
- Choline supplementation attenuated alcohol's effects on physical and most behavioral measures.
- Choline did not alter alcohol metabolism, indicating direct protective effects.
Conclusions:
- Early choline supplementation can mitigate some adverse effects of prenatal alcohol exposure.
- Dietary interventions may be a viable strategy to reduce FASD severity.
Abstract:
Prenatal alcohol exposure can lead to a range of physical, neurological, and behavioral alterations referred to as fetal alcohol spectrum disorders (FASD). Variability in outcome observed among children with FASD is likely related to various pre- and postnatal factors, including nutritional variables. Choline is an essential nutrient that influences brain and behavioral development. Recent animal research indicates that prenatal choline supplementation leads to long-lasting cognitive enhancement, as well as changes in brain morphology, electrophysiology and neurochemistry. The present study examined whether choline supplementation during ethanol exposure effectively reduces fetal alcohol effects. Pregnant dams were exposed to 6.0g/kg/day ethanol via intubation from gestational days (GD) 5-20; pair-fed and lab chow controls were included. During treatment, subjects from each group received choline chloride (250mg/kg/day) or vehicle. Physical development and behavioral development (righting reflex, geotactic reflex, cliff avoidance, reflex suspension and hindlimb coordination) were examined. Subjects prenatally exposed to alcohol exhibited reduced birth weight and brain weight, delays in eye opening and incisor emergence, and alterations in the development of all behaviors. Choline supplementation significantly attenuated ethanol's effects on birth and brain weight, incisor emergence, and most behavioral measures. In fact, behavioral performance of ethanol-exposed subjects treated with choline did not differ from that of controls. Importantly, choline supplementation did not influence peak blood alcohol level or metabolism, indicating that choline's effects were not due to differential alcohol exposure. These data indicate early dietary supplements may reduce the severity of some fetal alcohol effects, findings with important implications for children of women who drink alcohol during pregnancy.
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