Rapid effects of valproic acid on the fetal brain transcriptome: implications for brain development and autism

Susan G Dorsey1, Evelina Mocci1,2, Malcolm V Lane3

  • 1Department of Pain and Translational Symptom Science University of Maryland School of Nursing, Baltimore, MD, 21201, USA.

Translational Psychiatry
|December 5, 2024
PubMed

Insights

Prenatal exposure to valproic acid (VPA), an anti-epileptic drug, alters gene expression in fetal mouse brains, potentially impacting neurodevelopment and increasing autism risk. This study identifies key genes dysregulated by VPA exposure.

Area of Science:

  • Neuroscience
  • Genetics
  • Developmental Biology

Background:

  • Valproic acid (VPA) is an anti-epileptic and mood-stabilizing drug.
  • Prenatal VPA exposure is linked to increased autism incidence and causes autistic-like symptoms in animal models.
  • VPA rapidly affects gene expression in the developing fetal brain.

Purpose of the Study:

  • To identify mouse genes significantly altered by VPA in the fetal brain.
  • To find genes associated with autism or critical for embryonic neurodevelopment.
  • To understand VPA's impact on genes regulating brain connectivity.

Main Methods:

  • Analysis of RNA-seq data from E12.5 fetal mouse brains after maternal VPA administration.
  • Quantification of gene expression changes (upregulation and downregulation).
  • Comparison of VPA-affected genes with known autism risk genes and neurodevelopmental genes.

Main Results:

  • VPA significantly altered the expression of approximately 7,300 genes in fetal mouse brains.
  • No significant sex differences in VPA-induced gene expression were observed.
  • Expression of 399 autism risk genes and 258 other neurodevelopmental genes were significantly altered by VPA.

Conclusions:

  • VPA dysregulates genes involved in crucial neurodevelopmental processes, including neurogenesis, signaling pathways, and synaptic function.
  • Identified VPA-dysregulated genes provide potential targets for understanding autism's underlying mechanisms.
  • This research highlights VPA's profound impact on fetal brain gene expression and neurodevelopment.