Inhibition of oxytocin neurons during key periods of development has long-term behavioral and body composition effects

Abstract Background: Oxytocin (OT) is a key neuromodulator of social behavior in mammals, and accumulating evidence supports the existence of a critical period for OT action during infancy. However, other developmental windows remain poorly explored, and it remains unclear whether OT exert distinct functions depending on the timing of its activity. In this study, we aimed to determine whether specific developmental stages exist during which OT-expressing neurons play a decisive role with long-term consequences. Methods: We used a chemogenetic approach to transiently inhibit OT-expressing neurons during three postnatal developmental periods: infancy, the juvenile period, and young adulthood in male and female mice. Behavioral and metabolic outcomes were then assessed longitudinally. We also examined the effects of inhibiting OT neurons during late fetal stages and at birth. Results: Social memory was consistently impaired in males, regardless of the timing of neuronal inactivation. The most pronounced behavioral effects were observed following inhibition during infancy in both sexes. Metabolically, adult males from all cohorts exhibited increased body weight, whereas increased fat mass and adipocyte size hypertrophy were specifically observed following inhibition during the juvenile period. Notably, inhibition of OT-expressing neurons around the time of birth resulted in delayed parturition and altered neonatal feeding behavior. Limitations : OT-expressing neurons release multiple signaling molecules. However, converging evidence suggests that the observed phenotypes are primarily attributable to OT deficiency. Although this study demonstrates long-term behavioral and metabolic consequences of transient OT neuron inhibition, further experiments are required to elucidate underlying mechanisms and identify additional effects. Conclusions: Transient inhibition of OT-expressing neurons during distinct postnatal developmental periods leads to long-lasting effects on social behavior and metabolism, with outcomes depending on both the timing of inhibition and sex. Furthermore, our findings reveal an unexpected role for fetal/neonatal OT neurons in regulating the timing of birth and early feeding behavior.

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Publication Details

Journal
Molecular Autism
Published
2026-09-09
DOI
https://doi.org/10.1186/s13229-026-00744-x
Primary Topic
Neuroendocrine regulation and behavior
Type
article
Field-Weighted Citation Impact
0.00

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article

Inhibition of oxytocin neurons during key periods of development has long-term behavioral and body composition effects

Francesca Bader, Emilie Pallesi‐Pocachard, Sébastien G. Bouret, Fabienne Schaller et al.
Molecular Autism
Neuroendocrine regulation and behavior
article

Inhibition of oxytocin neurons during key periods of development has long-term behavioral and body composition effects

Francesca Bader, Emilie Pallesi‐Pocachard, Sébastien G. Bouret, Fabienne Schaller, Jean‐Luc Gaïarsa, Alessandra Bertoni, Roman Tyzio, Yasmine Belaïdouni, Pierre-Yves Barelle, Françoise Muscatelli, Felix Omnes, Catarina Santos, Marie-Sophie Alifrangis
article en

Abstract

Abstract Background: Oxytocin (OT) is a key neuromodulator of social behavior in mammals, and accumulating evidence supports the existence of a critical period for OT action during infancy. However, other developmental windows remain poorly explored, and it remains unclear whether OT exert distinct functions depending on the timing of its activity. In this study, we aimed to determine whether specific developmental stages exist during which OT-expressing neurons play a decisive role with long-term consequences. Methods: We used a chemogenetic approach to transiently inhibit OT-expressing neurons during three postnatal developmental periods: infancy, the juvenile period, and young adulthood in male and female mice. Behavioral and metabolic outcomes were then assessed longitudinally. We also examined the effects of inhibiting OT neurons during late fetal stages and at birth. Results: Social memory was consistently impaired in males, regardless of the timing of neuronal inactivation. The most pronounced behavioral effects were observed following inhibition during infancy in both sexes. Metabolically, adult males from all cohorts exhibited increased body weight, whereas increased fat mass and adipocyte size hypertrophy were specifically observed following inhibition during the juvenile period. Notably, inhibition of OT-expressing neurons around the time of birth resulted in delayed parturition and altered neonatal feeding behavior. Limitations : OT-expressing neurons release multiple signaling molecules. However, converging evidence suggests that the observed phenotypes are primarily attributable to OT deficiency. Although this study demonstrates long-term behavioral and metabolic consequences of transient OT neuron inhibition, further experiments are required to elucidate underlying mechanisms and identify additional effects. Conclusions: Transient inhibition of OT-expressing neurons during distinct postnatal developmental periods leads to long-lasting effects on social behavior and metabolism, with outcomes depending on both the timing of inhibition and sex. Furthermore, our findings reveal an unexpected role for fetal/neonatal OT neurons in regulating the timing of birth and early feeding behavior.

Molecular Autism
Inserm (FR), Aix-Marseille Université (FR), Université de Lille (FR), Centre de Recherche Jean Pierre Aubert (FR), Institut de Neurobiologie de la Méditerranée (FR), Phenotype Screening Corporation (United States) (US)
Foundation for Prader-Willi Research, Institut National de la Santé et de la Recherche Médicale, Centre National de la Recherche Scientifique
Openalex Percentile: Top 64%
Neuroendocrine regulation and behavior
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