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Human forebrain organoids reveal connections between valproic acid exposure and autism risk

  • Qingtuan Meng
  • , Wendiao Zhang
  • , Xuan Wang
  • , Chuan Jiao
  • , Sheng Xu
  • , Chunyu Liu
  • , Beisha Tang
  • , Chao Chen
  • University of South China
  • Central South University
  • SUNY Upstate Medical University

Research output: Contribution to journalArticlepeer-review

57 Scopus citations

Abstract

Valproic acid (VPA) exposure as an environmental factor that confers risk of autism spectrum disorder (ASD), its functional mechanisms in the human brain remain unclear since relevant studies are currently restricted to two-dimensional cell cultures and animal models. To identify mechanisms by which VPA contribute to ASD risk in human, here we used human forebrain organoids (hFOs), in vitro derived three-dimensional cell cultures that recapitulate key human brain developmental features. We identified that VPA exposure in hFOs affected the expression of genes enriched in neural development, synaptic transmission, oxytocin signaling, calcium, and potassium signaling pathways, which have been implicated in ASD. Genes (e.g., CAMK4, CLCN4, DPP10, GABRB3, KCNB1, PRKCB, SCN1A, and SLC24A2) that affected by VPA were significantly overlapped with those dysregulated in brains or organoids derived from ASD patients, and known ASD risk genes, as well as genes in ASD risk-associated gene coexpression modules. Single-cell RNA sequencing analysis showed that VPA exposure affected the expression of genes in choroid plexus, excitatory neuron, immature neuron, and medial ganglionic eminence cells annotated in hFOs. Microelectrode array further identified that VPA exposure in hFOs disrupted synaptic transmission. Taken together, this study connects VPA exposure to ASD pathogenesis using hFOs, which is valuable for illuminating the etiology of ASD and screening for potential therapeutic targets.

Original languageEnglish
Article number130
JournalTranslational Psychiatry
Volume12
Issue number1
DOIs
StatePublished - Dec 2022

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