Maternal genetics influences fetal neurodevelopment and postnatal autism spectrum disorder-like phenotype by

Ritika Jaini1,2, Matthew R Wolf1, Qi Yu1

  • 1Genomic Medicine Institute, Lerner Research Institute, Cleveland Clinic, Cleveland, OH, 44195, USA.

Insights

Maternal genetics alone can influence fetal neurodevelopment and autism spectrum disorder (ASD) risk. A specific mouse model showed that altered maternal immune regulation impacts offspring neurodevelopment and behavior.

Area of Science:

  • Neuroscience
  • Genetics
  • Immunology

Background:

  • Autism spectrum disorder (ASD) research often overlooks parental genetic roles in fetal neurodevelopment.
  • Maternal inflammation during pregnancy is a known risk factor for ASD, but the impact of maternal genetics itself is unclear.

Purpose of the Study:

  • To investigate the direct impact of maternal genetics on in-utero inflammation and fetal neurodevelopment.
  • To determine if maternal genetic factors alone can influence autism spectrum disorder (ASD)-like phenotypes in offspring.

Main Methods:

  • Utilized the PtenWT/m3m4 mouse model to study maternal genetic effects on ASD-like phenotypes.
  • Analyzed inflammatory markers, gene expression, and cellular phenotypes in mothers, fetuses, and placentas.
  • Assessed postnatal behavior and mortality in offspring from mothers with different genotypes.

Main Results:

  • Mothers with the PtenWT/m3m4 genotype exhibited inadequate Interleukin-10 (IL-10) mediated immunosuppression during pregnancy.
  • Low maternal IL-10 correlated with decreased fetal liver complement expression, increased blood-brain-barrier breakdown, neuronal loss, and impaired glial maturation.
  • Offspring displayed increased mortality, macrocephaly, and ASD-like behaviors, with altered phenotypic penetrance based on maternal genotype.

Conclusions:

  • Maternal genetics can independently modulate fetal neurodevelopment and ASD-related phenotypes.
  • Altered materno-fetal immunosuppression, specifically via IL-10 pathways, is a key mechanism.
  • This highlights the critical role of maternal genetic contributions to neurodevelopmental outcomes.

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