Prenatal Programming of Monocyte Chemotactic Protein-1 Signaling in Autism Susceptibility.
Alberto CamachoMarcela Cárdenas-TuemePublished in: Molecular neurobiology (2024)
Autism spectrum disorder (ASD) is a complex neurodevelopmental disorder that involves functional and structural defects in selective central nervous system (CNS) regions, harming the individual capability to process and respond to external stimuli, including impaired verbal and non-verbal communications. Etiological causes of ASD have not been fully clarified; however, prenatal activation of the innate immune system by external stimuli might infiltrate peripheral immune cells into the fetal CNS and activate cytokine secretion by microglia and astrocytes. For instance, genomic and postmortem histological analysis has identified proinflammatory gene signatures, microglia-related expressed genes, and neuroinflammatory markers in the brain during ASD diagnosis. Active neuroinflammation might also occur during the developmental stage, promoting the establishment of a defective brain connectome and increasing susceptibility to ASD after birth. While still under investigation, we tested the hypothesis whether the monocyte chemoattractant protein-1 (MCP-1) signaling is prenatally programmed to favor peripheral immune cell infiltration and activate microglia into the fetal CNS, setting susceptibility to autism-like behavior. In this review, we will comprehensively provide the current understanding of the prenatal activation of MCP-1 signaling by external stimuli during the developmental stage as a new selective node to promote neuroinflammation, brain structural alterations, and behavioral defects associated to ASD diagnosis.
Keyphrases
- autism spectrum disorder
- intellectual disability
- resting state
- attention deficit hyperactivity disorder
- cerebral ischemia
- pregnant women
- blood brain barrier
- inflammatory response
- white matter
- genome wide
- functional connectivity
- dendritic cells
- working memory
- lipopolysaccharide induced
- neuropathic pain
- immune response
- copy number
- lps induced
- lymph node
- protein protein
- endothelial cells
- genome wide identification
- binding protein
- peripheral blood
- amino acid
- brain injury
- gene expression
- multiple sclerosis
- spinal cord
- small molecule
- pregnancy outcomes
- dna methylation
- genome wide analysis