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Updated: Jun 5, 2025

Rapid Detection of Neurodevelopmental Phenotypes in Human Neural Precursor Cells NPCs
Published on: March 2, 2018
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.
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.
Abstract:
There is an increased incidence of autism among the children of women who take the anti-epileptic, mood-stabilizing drug, valproic acid (VPA) during pregnancy; moreover, exposure to VPA in utero causes autistic-like symptoms in rodents and non-human primates. Analysis of RNA-seq data obtained from E12.5 fetal mouse brains 3 hours after VPA administration to the pregnant dam revealed that VPA rapidly and significantly increased or decreased the expression of approximately 7,300 genes. No significant sex differences in VPA-induced gene expression were observed. Expression of 399 autism risk genes was significantly altered by VPA as was expression of 258 genes that have been reported to modulate fetal brain development but are not otherwise linked to autism. Expression of genes associated with intracellular signaling pathways, neurogenesis, and excitation-inhibition balance as well as synaptogenesis, neuronal fate determination, axon and dendritic development, neuroinflammation, circadian rhythms, and epigenetic modulation of gene expression was dysregulated by VPA. Notably, at least 40 genes that are known to regulate embryonic neurogenesis were dysregulated by VPA. The goal of this study was to identify mouse genes that are: (a) significantly up- or downregulated by VPA in the fetal brain and (b) associated with autism and/or known to play a role in embryonic neurodevelopmental processes, perturbation of which has the potential to alter brain connectivity and, consequently behavior, in the adult. The genes meeting these criteria provide potential targets for future hypothesis-driven studies to elucidate the proximal causes of errors in brain connectivity underlying neurodevelopmental disorders such as autism.
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