Prenatal Exposure to Valproic Acid Affects Microglia and Synaptic Ultrastructure in a Brain-Region-Specific Manner in Young-Adult Male Rats: Relevance to Autism Spectrum Disorders.
Magdalena Gąssowska-DobrowolskaMagdalena CieślikGrzegorz Arkadiusz CzapskiHenryk JęśkoMałgorzata Frontczak-BaniewiczMagdalena GewartowskaAgnieszka DominiakRafał PolowyRobert Kuba FilipkowskiLidia BabiecAgata AdamczykPublished in: International journal of molecular sciences (2020)
Autism spectrum disorders (ASD) are a heterogeneous group of neurodevelopmental conditions categorized as synaptopathies. Environmental risk factors contribute to ASD aetiology. In particular, prenatal exposure to the anti-epileptic drug valproic acid (VPA) may increase the risk of autism. In the present study, we investigated the effect of prenatal exposure to VPA on the synaptic morphology and expression of key synaptic proteins in the hippocampus and cerebral cortex of young-adult male offspring. To characterize the VPA-induced autism model, behavioural outcomes, microglia-related neuroinflammation, and oxidative stress were analysed. Our data showed that prenatal exposure to VPA impaired communication in neonatal rats, reduced their exploratory activity, and led to anxiety-like and repetitive behaviours in the young-adult animals. VPA-induced pathological alterations in the ultrastructures of synapses accompanied by deregulation of key pre- and postsynaptic structural and functional proteins. Moreover, VPA exposure altered the redox status and expression of proinflammatory genes in a brain region-specific manner. The disruption of synaptic structure and plasticity may be the primary insult responsible for autism-related behaviour in the offspring. The vulnerability of specific synaptic proteins to the epigenetic effects of VPA may highlight the potential mechanisms by which prenatal VPA exposure generates behavioural changes.
Keyphrases
- autism spectrum disorder
- young adults
- intellectual disability
- pregnant women
- prefrontal cortex
- attention deficit hyperactivity disorder
- diabetic rats
- oxidative stress
- risk factors
- poor prognosis
- cerebral ischemia
- resting state
- inflammatory response
- high glucose
- functional connectivity
- high fat diet
- white matter
- climate change
- neuropathic pain
- dna methylation
- dna damage
- high frequency
- emergency department
- cognitive impairment
- adipose tissue
- human health
- type diabetes
- gene expression
- risk assessment
- multiple sclerosis
- weight loss
- high resolution
- metabolic syndrome
- depressive symptoms
- spinal cord injury
- genome wide
- lps induced
- long non coding rna
- big data
- mass spectrometry
- deep learning
- heat shock
- atomic force microscopy
- childhood cancer
- blood brain barrier
- single molecule
- transcription factor
- working memory