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Updated: Jul 22, 2025

Moderate Prenatal Alcohol Exposure and Quantification of Social Behavior in Adult Rats
Published on: December 14, 2014
Behavioral changes in FPR2/ALX and Chemr23 receptor knockout mice are exacerbated by prenatal alcohol exposure
Sandra M Mooney1,2, Elanaria Billings1, Madison McNew1
1Nutrition Research Institute, University of North Carolina at Chapel Hill, Kannapolis, NC, United States.
Insights
Prenatal alcohol exposure (PAE) impacts offspring behavior. Specialized pro-resolving mediator (SPM) receptors FPR2 and ChemR23 are involved in these effects, offering insights into how omega-3 fatty acids may protect against PAE-induced neuroinflammation and cognitive deficits.
Area of Science:
- Neuroscience
- Developmental Biology
- Pharmacology
Background:
- Prenatal alcohol exposure (PAE) induces neuroinflammation, contributing to Fetal Alcohol Spectrum Disorder (FASD) pathophysiology.
- Omega-3 polyunsaturated fatty acids (PUFAs) show promise in mitigating PAE effects, but mechanisms remain unclear.
- Specialized pro-resolving mediators (SPMs), PUFA metabolites, resolve inflammation via brain receptors.
Purpose of the Study:
- To investigate the role of SPM receptors, specifically FPR2 and ChemR23, in PAE-induced behavioral deficits.
- To elucidate the mechanisms by which PUFAs might counteract PAE-related neurodevelopmental and cognitive impairments.
Main Methods:
- Pregnant wild-type (WT), FPR2 knockout (KO), and ChemR23 KO mice were exposed to alcohol during late gestation.
- Offspring (male and female) were behaviorally tested as adolescents and young adults.
- Maternal, fetal, growth, and behavioral outcomes were assessed across genotypes and exposure conditions.
Main Results:
- While maternal/fetal outcomes were unaffected by genotype, offspring exhibited distinct growth and behavioral phenotypes.
- ChemR23 KO mice showed reduced anxiety, while FPR2 KO mice displayed decreased strength and activity in the absence of PAE.
- PAE subtly affected WT behavior, including reduced activity and fear conditioning response, with specific impacts on KO lines.
Conclusions:
- The study identifies FPR2 and ChemR23 as key players in mediating behavioral outcomes following PAE.
- Findings suggest that targeting SPM pathways could be a therapeutic strategy to mitigate PAE-induced neurodevelopmental and cognitive deficits.
- This research provides mechanistic insights into how PUFAs may attenuate PAE-related impairments.
Introduction:
Prenatal alcohol exposure (PAE) causes neuroinflammation that may contribute to the pathophysiology underlying Fetal Alcohol Spectrum Disorder. Supplementation with omega-3 polyunsaturated fatty acids (PUFAs) has shown success in mitigating effects of PAE in animal models, however, the underlying mechanisms are unknown. Some PUFA metabolites, specialized pro-resolving mediators (SPMs), play a role in the resolution phase of inflammation, and receptors for these are in the brain.
Methods:
To test the hypothesis that the SPM receptors FPR2 and ChemR23 play a role in PAE-induced behavioral deficits, we exposed pregnant wild-type (WT) and knockout (KO) mice to alcohol in late gestation and behaviorally tested male and female offspring as adolescents and young adults.
Results:
Maternal and fetal outcomes were not different among genotypes, however, growth and behavioral phenotypes in the offspring did differ and the effects of PAE were unique to each line. In the absence of PAE, ChemR23 KO animals showed decreased anxiety-like behavior on the elevated plus maze and FPR2 KO had poor grip strength and low activity compared to age-matched WT mice. WT mice showed improved performance on fear conditioning between adolescence and young adulthood, this was not seen in either KO.
Discussion:
This PAE model has subtle effects on WT behavior with lower activity levels in young adults, decreased grip strength in males between test ages, and decreased response to the fear cue indicating an effect of alcohol exposure on learning. The PAE-mediated decreased response to the fear cue was also seen in ChemR23 KO but not FPR2 KO mice, and PAE worsened performance of adolescent FPR2 KO mice on grip strength and activity. Collectively, these findings provide mechanistic insight into how PUFAs could act to attenuate cognitive impairments caused by PAE.
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