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Blockage of VIP during mouse embryogenesis modifies adult behavior and results in permanent changes in brain chemistry

Hill JM, Hauser JM, Sheppard LM +5 more2007Journal of Molecular NeuroscienceJournal Article
10.1385/jmn:31:03:185PubMed
Hypothalamic-PituitaryNeurological

Abstract

Vasoactive intestinal peptide (VIP) regulates growth and development during the early postimplantation period of mouse embryogenesis. Blockage of VIP with a VIP antagonist during this period results in growth restriction, microcephaly, and developmental delays. Similar treatment of neonatal rodents also causes developmental delays and impaired diurnal rhythms, and the adult brains of these animals exhibit neuronal dystrophy and increased VIP binding. These data suggest that blockage of VIP during the development of the nervous system can result in permanent changes to the brain. In the current study, pregnant mice were treated with a VIP antagonist during embryonic days 8 through 10. The adult male offspring were examined in tests of novelty, paired activity, and social recognition. Brain tissue was examined for several measures of chemistry and gene expression of VIP and related compounds. Glial cells from the cortex of treated newborn mice were plated with neurons and examined for VIP binding and their ability to enhance neuronal survival. Treated adult male mice exhibited increased anxiety-like behavior and deficits in social behavior. Brain tissue exhibited regionally specific changes in VIP chemistry and a trend toward increased gene expression of VIP and related compounds that reached statistical significance in the VIP receptor, VPAC-1, in the female cortex. When compared to control astrocytes, astrocytes from treated cerebral cortex produced further increases in neuronal survival with excess synaptic connections and reduced VIP binding. In conclusion, impaired VIP activity during mouse embryogenesis resulted in permanent changes to both adult brain chemistry/cell biology and behavior with aspects of autism-like social deficits.

Key Biomarkers

Neuronal dystrophyVIP (Vasoactive Intestinal Peptide)VIP bindingVPAC-1 receptor

Symptom Clusters

Autism-like social deficitsDevelopmental delaysImpaired diurnal rhythmsIncreased anxiety-like behaviorMicrocephalySocial behavior deficits

Cited By (4)

  • VIP, From Gene to Behavior and Back: Summarizing my 25 Years of ResearchJournal of Molecular Neuroscience · 2008
  • Regardless of genotype, offspring of VIP-deficient female mice exhibit developmental delays and deficits in social behaviorInternational Journal of Developmental Neuroscience · 2008
  • Vasoactive Intestinal Peptide (VIP) Regulates Activity-Dependent Neuroprotective Protein (ADNP) Expression In VivoJournal of Molecular Neuroscience · 2007
  • Endogenous inhibition of hippocampal LTD and depotentiation by vasoactive intestinal peptide VPAC1 receptorsHippocampus · 2014

References (3)

  • VIP provides cellular protection through a specific splice variant of the PACAP receptor: a new neuroprotection targetPeptides · 2006
  • Vasoactive Intestinal Peptide in Neurodevelopmental Disorders:Therapeutic PotentialCurrent Pharmaceutical Design · 2007

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