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.

PubMed

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.
Abstract

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