Literature DB >> 35840800

A short period of early life oxytocin treatment rescues social behavior dysfunction via suppression of hippocampal hyperactivity in male mice.

Libiao Pan1,2, Lu Zheng1,2, Xiaotong Wu1,2, Zhenggang Zhu1,2, Siyu Wang1,2, Yi Lu1, Yang He1, Qian Yang1, Xiaolin Ma1,2, Xiaomeng Wang1,2, Hongbin Yang1, Li Zhan1,2, Yujian Luo3, Xiangyao Li1,2, Yudong Zhou1,2, Xiaodong Wang1,2, Jianhong Luo1,2, Lang Wang3, Shumin Duan1,2, Hao Wang4,5.   

Abstract

Early sensory experiences interact with genes to shape precise neural circuits during development. This process is vital for proper brain function in adulthood. Neurological dysfunctions caused by environmental alterations and/or genetic mutation may share the same molecular or cellular mechanisms. Here, we show that early life bilateral whisker trimming (BWT) subsequently affects social discrimination in adult male mice. Enhanced activation of the hippocampal dorsal CA3 (dCA3) in BWT mice was observed during social preference tests. Optogenetic activation of dCA3 in naive mice impaired social discrimination, whereas chemogenetic silencing of dCA3 rescued social discrimination deficit in BWT mice. Hippocampal oxytocin (OXT) is reduced after whisker trimming. Neonatal intraventricular compensation of OXT relieved dCA3 over-activation and prevented social dysfunction. Neonatal knockdown of OXT receptor in dCA3 mimics the effects of BWT, and cannot be rescued by OXT treatment. Social behavior deficits in a fragile X syndrome mouse model (Fmr1 KO mice) could also be recovered by early life OXT treatment, through negating dCA3 over-activation. Here, a possible avenue to prevent social dysfunction is uncovered.
© 2022. The Author(s).

Entities:  

Year:  2022        PMID: 35840800     DOI: 10.1038/s41380-022-01692-7

Source DB:  PubMed          Journal:  Mol Psychiatry        ISSN: 1359-4184            Impact factor:   13.437


  42 in total

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