Oxytocin Receptor in Cerebellar Purkinje Cells Does Not Engage in Autism-Related Behaviors
Shen Li-Ping, Li Wei, Pei Ling-Zhu, Yin Jun, Xie Shu-Tao, Li Hong-Zhao, Yan Chao, Wang Jian-Jun, Zhang Qipeng, Zhang Xiao-Yang, Zhu Jing-Ning
Journal:CEREBELLUM
IF:3.65
DOI:10.1007/s12311-022-01466-5
PMID:36040660
Published:2022-08-30
research field:肿瘤学分子生物学细胞死亡机制癌症信号通路表观遗传学
Abstract
The classical motor center cerebellum is one of the most consistent structures of abnormality in autism spectrum disorders (ASD), and neuropeptide oxytocin is increasingly explored as a potential pharmacotherapy for ASD. However, whether oxytocin targets the cerebellum for therapeutic effects remains unclear. Here, we report a localization of oxytocin receptor (OXTR) in Purkinje cells (PCs) of cerebellar lobule Crus I, which is functionally connected with ASD-implicated circuits. OXTR activation neither affects firing activities, intrinsic excitability, and synaptic transmission of normal PCs nor improves abnormal intrinsic excitability and synaptic transmission of PCs in maternal immune activation (MIA) mouse model of autism. Furthermore, blockage of OXTR in Crus I in wild-type mice does not induce autistic-like social, stereotypic, cognitive, and anxiety-like behaviors. These results suggest that oxytocin signaling in Crus I PCs seems to be uninvolved in ASD pathophysiology, and contribute to understanding of targets and mechanisms of oxytocin in ASD treatment.
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