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Neuroanatomical Alterations in the CNTNAP2 Mouse Model of Autism Spectrum Disorder

Autism spectrum disorder (ASD) is associated with neurodevelopmental alterations, including atypical forebrain cellular organization. Mutations in several ASD-related genes often result in cerebral cortical anomalies, such as the abnormal developmental migration of excitatory pyramidal cells and the...

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Autores principales: Gandhi, Tanya, Canepa, Cade R., Adeyelu, Tolulope T., Adeniyi, Philip A., Lee, Charles C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10296611/
https://www.ncbi.nlm.nih.gov/pubmed/37371370
http://dx.doi.org/10.3390/brainsci13060891
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author Gandhi, Tanya
Canepa, Cade R.
Adeyelu, Tolulope T.
Adeniyi, Philip A.
Lee, Charles C.
author_facet Gandhi, Tanya
Canepa, Cade R.
Adeyelu, Tolulope T.
Adeniyi, Philip A.
Lee, Charles C.
author_sort Gandhi, Tanya
collection PubMed
description Autism spectrum disorder (ASD) is associated with neurodevelopmental alterations, including atypical forebrain cellular organization. Mutations in several ASD-related genes often result in cerebral cortical anomalies, such as the abnormal developmental migration of excitatory pyramidal cells and the malformation of inhibitory neuronal circuitry. Notably here, mutations in the CNTNAP2 gene result in ectopic superficial cortical neurons stalled in lower cortical layers and alterations to the balance of cortical excitation and inhibition. However, the broader circuit-level implications of these findings have not been previously investigated. Therefore, we assessed whether ectopic cortical neurons in CNTNAP2 mutant mice form aberrant connections with higher-order thalamic nuclei, potentially accounting for some autistic behaviors, such as repetitive and hyperactive behaviors. Furthermore, we assessed whether the development of parvalbumin-positive (PV) cortical interneurons and their specialized matrix support structures, called perineuronal nets (PNNs), were altered in these mutant mice. We found alterations in both ectopic neuronal connectivity and in the development of PNNs, PV neurons and PNNs enwrapping PV neurons in various sensory cortical regions and at different postnatal ages in the CNTNAP2 mutant mice, which likely lead to some of the cortical excitation/inhibition (E/I) imbalance associated with ASD. These findings suggest neuroanatomical alterations in cortical regions that underlie the emergence of ASD-related behaviors in this mouse model of the disorder.
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spelling pubmed-102966112023-06-28 Neuroanatomical Alterations in the CNTNAP2 Mouse Model of Autism Spectrum Disorder Gandhi, Tanya Canepa, Cade R. Adeyelu, Tolulope T. Adeniyi, Philip A. Lee, Charles C. Brain Sci Article Autism spectrum disorder (ASD) is associated with neurodevelopmental alterations, including atypical forebrain cellular organization. Mutations in several ASD-related genes often result in cerebral cortical anomalies, such as the abnormal developmental migration of excitatory pyramidal cells and the malformation of inhibitory neuronal circuitry. Notably here, mutations in the CNTNAP2 gene result in ectopic superficial cortical neurons stalled in lower cortical layers and alterations to the balance of cortical excitation and inhibition. However, the broader circuit-level implications of these findings have not been previously investigated. Therefore, we assessed whether ectopic cortical neurons in CNTNAP2 mutant mice form aberrant connections with higher-order thalamic nuclei, potentially accounting for some autistic behaviors, such as repetitive and hyperactive behaviors. Furthermore, we assessed whether the development of parvalbumin-positive (PV) cortical interneurons and their specialized matrix support structures, called perineuronal nets (PNNs), were altered in these mutant mice. We found alterations in both ectopic neuronal connectivity and in the development of PNNs, PV neurons and PNNs enwrapping PV neurons in various sensory cortical regions and at different postnatal ages in the CNTNAP2 mutant mice, which likely lead to some of the cortical excitation/inhibition (E/I) imbalance associated with ASD. These findings suggest neuroanatomical alterations in cortical regions that underlie the emergence of ASD-related behaviors in this mouse model of the disorder. MDPI 2023-05-31 /pmc/articles/PMC10296611/ /pubmed/37371370 http://dx.doi.org/10.3390/brainsci13060891 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gandhi, Tanya
Canepa, Cade R.
Adeyelu, Tolulope T.
Adeniyi, Philip A.
Lee, Charles C.
Neuroanatomical Alterations in the CNTNAP2 Mouse Model of Autism Spectrum Disorder
title Neuroanatomical Alterations in the CNTNAP2 Mouse Model of Autism Spectrum Disorder
title_full Neuroanatomical Alterations in the CNTNAP2 Mouse Model of Autism Spectrum Disorder
title_fullStr Neuroanatomical Alterations in the CNTNAP2 Mouse Model of Autism Spectrum Disorder
title_full_unstemmed Neuroanatomical Alterations in the CNTNAP2 Mouse Model of Autism Spectrum Disorder
title_short Neuroanatomical Alterations in the CNTNAP2 Mouse Model of Autism Spectrum Disorder
title_sort neuroanatomical alterations in the cntnap2 mouse model of autism spectrum disorder
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10296611/
https://www.ncbi.nlm.nih.gov/pubmed/37371370
http://dx.doi.org/10.3390/brainsci13060891
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