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Updated: Jul 11, 2025

Electrophysiological Measurements and Analysis of Nociception in Human Infants
Published on: December 20, 2011
Infant pain vs. pain with parental suppression: Immediate and enduring impact on brain, pain and affect
Gordon A Barr1,2, Maya Opendak3,4, Rosemarie E Perry3,4
1Department of Anesthesiology and Critical Care Medicine, The Children's Hospital of Philadelphia, Philadelphia, Pennsylvania, United States of America.
Insights
Parental presence buffers infant rat pain short-term but repeated exposure alters long-term pain and social behavior development. Early life social buffering of pain impacts neurodevelopmental trajectories differently than pain alone.
Area of Science:
- Neuroscience
- Developmental Biology
- Behavioral Science
Background:
- Parental presence can buffer infant pain responses in the short term.
- Repeated social buffering of pain may lead to adverse long-term effects.
Purpose of the Study:
- To investigate the short- and long-term effects of social buffering of pain in infant rats.
- To compare the impact of social buffering versus pain alone on neurobehavioral outcomes.
Main Methods:
- Infant rat pups (postnatal days 8 and 12) received mild tail shocks with or without maternal presence.
- Gene expression, Fos protein levels, and behavioral responses were analyzed.
- Pups were exposed to repeated shock-mother pairings during sensitive developmental periods (PN5-9 or PN10-14) to assess long-term adult outcomes.
Main Results:
- Maternal presence reduced pain behaviors, USVs, and Fos expression in specific brain regions at PN12.
- Social buffering at PN12 induced significant changes in gene expression related to GPCRs and neural development.
- Early life (PN5-9) shock-mother pairings reduced adult pain sensitivity and altered social behavior, while later pairings (PN10-14) had less impact on pain but affected fear responses.
Conclusions:
- Experiencing pain within a social context during early development alters neurobehavioral responses.
- Repeated social buffering of infant pain initiates a distinct developmental trajectory for pain and affect processing compared to experiencing pain alone.
- These findings highlight the critical role of early social environment in programming long-term pain and emotional regulation.
Background:
In the short term, parental presence while a human infant is in pain buffers the immediate pain responses, although emerging evidence suggests repeated social buffering of pain may have untoward long-term effects.
Methods/Finding:
To explore the short- and long-term impacts of social buffering of pain, we first measured the infant rat pup's [postnatal day (PN) 8, or 12] response to mild tail shock with the mother present compared to shock alone or no shock. Shock with the mother reduced pain-related behavioral activation and USVs of pups at both ages and reduced Fos expression in the periaqueductal gray, hypothalamic paraventricular nucleus, and the amygdala at PN12 only. At PN12, shock with the mother compared to shock alone differentially regulated expression of several hundred genes related to G-protein-coupled receptors (GPCRs) and neural development, whereas PN8 pups showed a less robust and less coherent expression pattern. In a second set of experiments, pups were exposed to daily repeated Shock-mother pairings (or controls) at PN5-9 or PN10-14 (during and after pain sensitive period, respectively) and long-term outcome assessed in adults. Shock+mother pairing at PN5-9 reduced adult carrageenan-induced thermal hyperalgesia and reduced Fos expression, but PN10-14 pairings had minimal impact. The effect of infant treatment on adult affective behavior showed a complex treatment by age dependent effect. Adult social behavior was decreased following Shock+mother pairings at both PN5-9 and PN10-14, whereas shock alone had no effect. Adult fear responses to a predator odor were decreased only by PN10-14 treatment and the infant Shock alone and Shock+mother did not differ.
Conclusions/Significance:
Overall, integrating these results into our understanding of long-term programming by repeated infant pain experiences, the data suggest that pain experienced within a social context impacts infant neurobehavioral responses and initiates an altered developmental trajectory of pain and affect processing that diverges from experiencing pain alone.
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