TY - JOUR
T1 - Cortical Structure Alterations and Social Behavior Impairment in p50-Deficient Mice
AU - Bonini, Sara Anna
AU - Mastinu, Andrea
AU - Maccarinelli, Giuseppina
AU - Mitola, Stefania
AU - Premoli, Marika
AU - La Rosa, Luca Rosario
AU - Ferrari-Toninelli, Giulia
AU - Grilli, Mariagrazia
AU - Memo, Maurizio
N1 - Publisher Copyright:
© 2016 The Author. Published by Oxford University Press.
PY - 2016/6
Y1 - 2016/6
N2 - Alterations in genes that regulate neurodevelopment can lead to cortical malformations, resulting in malfunction during postnatal life. The NF-κB pathway has a key role during neurodevelopment by regulating the maintenance of the neural progenitor cell pool and inhibiting neuronal differentiation. In this study, we evaluated whether mice lacking the NF-κB p50 subunit (KO) present alterations in cortical structure and associated behavioral impairment. We found that, compared with wild type (WT), KO mice at postnatal day 2 present an increase in radial glial cells, an increase in Reelin protein expression levels, in addition to an increase of specific layer thickness. Moreover, adult KO mice display abnormal columnar organization in the somatosensory cortex, a specific decrease in somatostatin- and parvalbumin-expressing interneurons, altered neurite orientation, and a decrease in Synapsin I protein levels. Concerning behavior, KO mice, in addition to an increase in locomotor and exploratory activity, display impairment in social behaviors, with a reduction in social interaction. Finally, we found that risperidone treatment decreased hyperactivity of KO mice, but had no effect on defective social interaction. Altogether, these data add complexity to a growing body of data, suggesting a link between dysregulation of the NF-κB pathway and neurodevelopmental disorders pathogenesis.
AB - Alterations in genes that regulate neurodevelopment can lead to cortical malformations, resulting in malfunction during postnatal life. The NF-κB pathway has a key role during neurodevelopment by regulating the maintenance of the neural progenitor cell pool and inhibiting neuronal differentiation. In this study, we evaluated whether mice lacking the NF-κB p50 subunit (KO) present alterations in cortical structure and associated behavioral impairment. We found that, compared with wild type (WT), KO mice at postnatal day 2 present an increase in radial glial cells, an increase in Reelin protein expression levels, in addition to an increase of specific layer thickness. Moreover, adult KO mice display abnormal columnar organization in the somatosensory cortex, a specific decrease in somatostatin- and parvalbumin-expressing interneurons, altered neurite orientation, and a decrease in Synapsin I protein levels. Concerning behavior, KO mice, in addition to an increase in locomotor and exploratory activity, display impairment in social behaviors, with a reduction in social interaction. Finally, we found that risperidone treatment decreased hyperactivity of KO mice, but had no effect on defective social interaction. Altogether, these data add complexity to a growing body of data, suggesting a link between dysregulation of the NF-κB pathway and neurodevelopmental disorders pathogenesis.
KW - Cortical structure
KW - NF-κB
KW - Neurodevelopmental disorders
KW - P50 mice
KW - Social behavior
UR - http://www.scopus.com/inward/record.url?scp=84974533842&partnerID=8YFLogxK
U2 - 10.1093/cercor/bhw037
DO - 10.1093/cercor/bhw037
M3 - Article
SN - 1047-3211
VL - 26
SP - 2832
EP - 2849
JO - Cerebral Cortex
JF - Cerebral Cortex
IS - 6
ER -