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Adolescent social isolation disrupts developmental tuning of neuropeptide circuits in the hypothalamus to amygdala regulating social and defensive behavior.
Arakawa, Hiroyuki; Tokashiki, Mana; Higuchi, Yuki; Konno, Toshihiro.
Afiliação
  • Arakawa H; Department of Pharmacology, University of Michigan School of Medicine, MI, USA. Electronic address: harakawa@med.umich.edu.
  • Tokashiki M; Faculty of Medicine, University of the Ryukyus, Okinawa, Japan.
  • Higuchi Y; Department of Systems Physiology, University of the Ryukyus Graduate School of Medicine, Okinawa, Japan.
  • Konno T; Department of Subtropical Agro-Environmental Sciences, Faculty of Agriculture, University of the Ryukyus, Okinawa, Japan; The United Graduate School of Agricultural Sciences, Kagoshima University, Kagoshima, Japan.
Peptides ; 175: 171178, 2024 May.
Article em En | MEDLINE | ID: mdl-38368908
ABSTRACT
Engaging in positive social (i.e., prosocial) interactions during adolescence acts to modulate neural circuits that determine adult adaptive behavior. While accumulating evidence indicates that a strong craving for prosocial behavior contributes to sustaining neural development, the consequences of social deprivation during adolescence on social neural circuits, including those involving oxytocin (OXT) and vasopressin (AVP), are poorly characterized. We evaluated adaptive behaviors in socially isolated mice, including anxiety-like, social, and defensive behaviors, along with OXT and AVP neural profiles in relevant brain regions. Social isolation from postnatal day (P-)22 to P-48 induced enhanced defensive and exploratory behaviors, in nonsocial and social contexts. Unlike OXT neurons, AVP+ cell density in the paraventricular nucleus of the hypothalamus increases with age in males. Social isolation also modulated gene expression in the medial amygdala (MeA), including the upregulation of OXT receptors in males and the downregulation of AVP1a receptors in both sexes. Socially isolated mice showed an enhanced defensive, anogenital approach toward a novel adult female during direct social interactions. Subsequent c-Fos mapping revealed diminished neural activity in restricted brain areas, including the MeA, lateral septum, and posterior intralaminar nucleus of the thalamus, in socially isolated mice. These data indicate that neural signals arising from daily social interactions invoke region-specific modification of neuropeptide expression that coordinates with altered defensiveness and neural responsivities, including OXT- and AVP-projecting regions. The present findings indicate an involvement of OXT and AVP circuits in adolescent neural and behavioral plasticity that is tuned by daily social interaction.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Ocitocina / Hipotálamo Idioma: En Revista: Peptides Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Ocitocina / Hipotálamo Idioma: En Revista: Peptides Ano de publicação: 2024 Tipo de documento: Article