Okada_2021_Sci.Rep_11_13589

Reference

Title : Different cholinergic cell groups in the basal forebrain regulate social interaction and social recognition memory - Okada_2021_Sci.Rep_11_13589
Author(s) : Okada K , Nishizawa K , Kobayashi T , Sakata S , Hashimoto K , Kobayashi K
Ref : Sci Rep , 11 :13589 , 2021
Abstract : Social behaviour is a complex construct that is reported to include several components of social approach, interaction and recognition memory. Alzheimer's disease (AD) is mainly characterized by progressive dementia and is accompanied by cognitive impairments, including a decline in social ability. The cholinergic system is a potential constituent for the neural mechanisms underlying social behaviour, and impaired social ability in AD may have a cholinergic basis. However, the involvement of cholinergic function in social behaviour has not yet been fully understood. Here, we performed a selective elimination of cholinergic cell groups in the basal forebrain in mice to examine the role of cholinergic function in social interaction and social recognition memory by using the three-chamber test. Elimination of cholinergic neurons in the medial septum (MS) and vertical diagonal band of Broca (vDB) caused impairment in social interaction, whereas ablating cholinergic neurons in the nucleus basalis magnocellularis (NBM) impaired social recognition memory. These impairments were restored by treatment with cholinesterase inhibitors, leading to cholinergic system activation. Our findings indicate distinct roles of MS/vDB and NBM cholinergic neurons in social interaction and social recognition memory, suggesting that cholinergic dysfunction may explain social ability deficits associated with AD symptoms.
ESTHER : Okada_2021_Sci.Rep_11_13589
PubMedSearch : Okada_2021_Sci.Rep_11_13589
PubMedID: 34193944

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Citations formats

Okada K, Nishizawa K, Kobayashi T, Sakata S, Hashimoto K, Kobayashi K (2021)
Different cholinergic cell groups in the basal forebrain regulate social interaction and social recognition memory
Sci Rep 11 :13589

Okada K, Nishizawa K, Kobayashi T, Sakata S, Hashimoto K, Kobayashi K (2021)
Sci Rep 11 :13589