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    Association of complement component 4 with neuroimmune abnormalities in the subventricular zone in schizophrenia and autism spectrum disorders.

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    Author
    Mou, Ta-Chung M
    Lane, Malcolm V
    Ireland, Derek D C
    Verthelyi, Daniela
    Tonelli, Leonardo H
    Clark, Sarah M
    Date
    2022-08-19
    Journal
    Neurobiology of Disease
    Publisher
    Elsevier
    Type
    Article
    
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    See at
    https://doi.org/10.1016/j.nbd.2022.105840
    Abstract
    An early inflammatory insult is the most recognized risk factor associated with neurodevelopmental psychiatric disorders, even more so than genetic variants. Notably, complement component 4 (C4), a molecule involved in inflammatory responses, has been strongly associated with schizophrenia (SZ) and its role in other neurodevelopmental disorders, such as autism (ASD), is an area of active investigation. Moreover, while C4 in SZ has been implicated in the context of synaptic pruning, little is known about its neuroinflammatory role. The subventricular zone (SVZ) is a region heavily involved in neurodevelopment and neuroimmune interactions through the lifespan; thus, it is a region wherein C4 may play a vital role in disease pathology. Using in situ hybridization with radioactive riboprobes and RNAscope, we identified robust astrocytic expression of C4 in the SVZ and in the septum pellucidum. C4 was also expressed in ependyma, neurons, and Ki67+ progenitor cells. Examination of mRNA levels showed elevated C4 in both ASD and SZ, with higher expression in SZ compared to controls. Targeted transcriptomic analysis of inflammatory pathways revealed a strong association of complement system genes with SZ, and to a lesser extent, ASD, as well as generalized immune dysregulation without a strong association with known infectious pathways. Analysis of differentially expressed genes (DEGs) showed that ASD DEGs were enriched in adaptive immune system functions such as Th cell differentiation, while SZ DEGs were enriched in innate immune system functions, including NF-κB and toll like receptor signaling. Moreover, the number of Ki67+ cells was significantly higher in ASD compared to SZ and controls. Taken together, these results support a role for C4 into inflammatory-neuroimmune dysregulation observed in SZ and ASD pathology.
    Data Availibility
    Data will be made available on request.
    Rights/Terms
    Copyright © 2022. Published by Elsevier Inc.
    Keyword
    Astrocytes
    In situ hybridization
    Ki67
    Microglia
    Neurodevelopment
    Neuroimmune
    Postmortem
    Identifier to cite or link to this item
    http://hdl.handle.net/10713/19612
    ae974a485f413a2113503eed53cd6c53
    10.1016/j.nbd.2022.105840
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