[As early as birth, oxytocin plays a key role in both food and social behavior]
1INMED (Institut de Neurobiologie de la Méditerranée), INSERM, Aix Marseille Univ, Marseille, France.
Insights
Oxytocin (OT) administration at birth enhances sensory integration and feeding in newborns, potentially mitigating long-term social and behavioral deficits associated with neurodevelopmental disorders.
Area of Science:
- Neuroendocrinology
- Developmental neuroscience
Context:
- The oxytocin (OT) system's role in adult social behavior is well-established, but its developmental impact during the critical perinatal period remains underexplored.
- Early life sensory processing, feeding behaviors, and social bonding are foundational for neurodevelopment.
Purpose:
- To investigate the dynamic development of the OT system during early postnatal life.
- To elucidate the functions of OT in the perinatal period for shaping social behaviors.
- To explore the therapeutic potential of early OT administration in neurodevelopmental disorders.
Summary:
- Oxytocin (OT) is crucial for newborn adaptation to sensory stimuli and stimulates suckling activity, vital for mother-infant bonding and future social interactions.
- In rodent and human models of autism spectrum disorders (ASD) like Prader-Willi and Schaaf-Yang syndromes, early sensory, feeding, and behavioral deficits are observed.
- Early postnatal OT administration improves sensory integration, maternal bonding, and sucking activity, with observed long-term benefits for social and cognitive behavior.
Impact:
- Early feeding difficulties may serve as a predictive marker for ASD.
- Perinatal oxytocin treatment shows promise for improving infant feeding behaviors and addressing long-term social and behavioral challenges.
- This research highlights the critical role of the OT system in early neurodevelopment and social behavior formation.
Abstract:
Oxytocin (OT) is a neurohormone that regulates the so-called "social brain" and is mainly studied in adulthood. During postnatal development, the mechanisms by which the OT system structures various behaviors are little studied. Here we present the dynamic process of postnatal development of the OT system as well as the OT functions in the perinatal period that are essential for shaping social behaviors. Specifically, we discuss the role of OT, in the newborn, in integrating and adapting responses to early sensory stimuli and in stimulating suckling activity. Sensory dialogue and suckling are involved in mother-infant bonds and structure future social interactions. In rodents and humans, neurodevelopmental diseases with autism spectrum disorders (ASD), such as Prader-Willi and Schaaf-Yang syndromes, are associated with sensory, feeding and behavioral deficits in infancy. We propose that in early postnatal life, OT plays a key role in stimulating the maturation of neural networks controlling feeding behavior and early social interactions from birth. Administration of OT at birth improves sensory integration of environmental factors and the relationship with the mother as well as sucking activity as we have shown in mouse models and in babies with Prader-Willi syndrome. Long-term effects have also been observed on social and cognitive behavior. Therefore, early feeding difficulties might be an early predictive marker of ASD, and OT treatment a promising option to improve feeding behavior and, in the longer term, social behavioral problems.
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