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Network Reconstruction Reveals that Valproic Acid Activates Neurogenic Transcriptional Programs in Adult Brain Following Traumatic Injury.

Publication ,  Journal Article
Higgins, GA; Georgoff, P; Nikolian, V; Allyn-Feuer, A; Pauls, B; Higgins, R; Athey, BD; Alam, HE
Published in: Pharm Res
August 2017

OBJECTIVES: To determine the mechanism of action of valproic acid (VPA) in the adult central nervous system (CNS) following traumatic brain injury (TBI) and hemorrhagic shock (HS). METHODS: Data were analyzed from different sources, including experiments in a porcine model, data from postmortem human brain, published studies, public and commercial databases. RESULTS: The transcriptional program in the CNS following TBI, HS, and VPA treatment includes activation of regulatory pathways that enhance neurogenesis and suppress gliogenesis. Genes which encode the transcription factors (TFs) that specify neuronal cell fate, including MEF2D, MYT1L, NEUROD1, PAX6 and TBR1, and their target genes, are induced by VPA. VPA represses genes responsible for oligodendrogenesis, maintenance of white matter, T-cell activation, angiogenesis, and endothelial cell proliferation, adhesion and chemotaxis. NEUROD1 has regulatory interactions with 38% of the genes regulated by VPA in a swine model of TBI and HS in adult brain. Hi-C spatial mapping of a VPA pharmacogenomic SNP in the GRIN2B gene shows it is part of a transcriptional hub that contacts 12 genes that mediate chromatin-mediated neurogenesis and neuroplasticity. CONCLUSIONS: Following TBI and HS, this study shows that VPA administration acts in the adult brain through differential activation of TFs responsible for neurogenesis, genes responsible for neuroplasticity, and repression of TFs that specify oligodendrocyte cell fate, endothelial cell chemotaxis and angiogenesis. Short title: Mechanism of action of valproic acid in traumatic brain injury.

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Published In

Pharm Res

DOI

EISSN

1573-904X

Publication Date

August 2017

Volume

34

Issue

8

Start / End Page

1658 / 1672

Location

United States

Related Subject Headings

  • Valproic Acid
  • Transcriptional Activation
  • Transcription Factors
  • Swine
  • Shock, Hemorrhagic
  • Rodentia
  • Pharmacology & Pharmacy
  • Pharmacogenetics
  • Oligodendroglia
  • Neurons
 

Citation

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Higgins, G. A., Georgoff, P., Nikolian, V., Allyn-Feuer, A., Pauls, B., Higgins, R., … Alam, H. E. (2017). Network Reconstruction Reveals that Valproic Acid Activates Neurogenic Transcriptional Programs in Adult Brain Following Traumatic Injury. Pharm Res, 34(8), 1658–1672. https://doi.org/10.1007/s11095-017-2130-6
Higgins, Gerald A., Patrick Georgoff, Vahagn Nikolian, Ari Allyn-Feuer, Brian Pauls, Richard Higgins, Brian D. Athey, and Hasan E. Alam. “Network Reconstruction Reveals that Valproic Acid Activates Neurogenic Transcriptional Programs in Adult Brain Following Traumatic Injury.Pharm Res 34, no. 8 (August 2017): 1658–72. https://doi.org/10.1007/s11095-017-2130-6.
Higgins GA, Georgoff P, Nikolian V, Allyn-Feuer A, Pauls B, Higgins R, et al. Network Reconstruction Reveals that Valproic Acid Activates Neurogenic Transcriptional Programs in Adult Brain Following Traumatic Injury. Pharm Res. 2017 Aug;34(8):1658–72.
Higgins, Gerald A., et al. “Network Reconstruction Reveals that Valproic Acid Activates Neurogenic Transcriptional Programs in Adult Brain Following Traumatic Injury.Pharm Res, vol. 34, no. 8, Aug. 2017, pp. 1658–72. Pubmed, doi:10.1007/s11095-017-2130-6.
Higgins GA, Georgoff P, Nikolian V, Allyn-Feuer A, Pauls B, Higgins R, Athey BD, Alam HE. Network Reconstruction Reveals that Valproic Acid Activates Neurogenic Transcriptional Programs in Adult Brain Following Traumatic Injury. Pharm Res. 2017 Aug;34(8):1658–1672.
Journal cover image

Published In

Pharm Res

DOI

EISSN

1573-904X

Publication Date

August 2017

Volume

34

Issue

8

Start / End Page

1658 / 1672

Location

United States

Related Subject Headings

  • Valproic Acid
  • Transcriptional Activation
  • Transcription Factors
  • Swine
  • Shock, Hemorrhagic
  • Rodentia
  • Pharmacology & Pharmacy
  • Pharmacogenetics
  • Oligodendroglia
  • Neurons