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Updated: Jul 7, 2026

A Preterm Rat Model for Pain Studies
Published on: February 9, 2024
Preterm births: can neonatal pain alter the development of endogenous gating systems?
Philippe Goffaux1, Sylvie Lafrenaye, Mélanie Morin
1Université de Sherbrooke, Faculté de Médecine, Neurochirurgie, 3001, 12(e) Avenue nord, Sherbrooke, Québec, Canada.
Insights
Early painful procedures in preterm infants may impair pain modulation later in life. This can affect how children respond to pain and stress, impacting their neurophysiological development.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Pain Research
Background:
- Prematurity impacts neurophysiological development, including pain and cardiac circuits.
- Neonatal painful interventions may have long-term effects on pain processing.
Purpose of the Study:
- To investigate the long-term effects of early painful interventions on counterirritation-induced analgesia in children.
- To assess if the frequency of neonatal painful procedures influences pain modulation later in life.
Main Methods:
- Study included 26 children (7-11 years) divided into term-born, preterm with few painful interventions, and preterm with numerous painful interventions groups.
- Assessed heat pain thresholds, heat sensitivity, and cardiac reactivity using the cold pressor test for counterirritation-induced analgesia.
Main Results:
- Term-born and preterm children had comparable pain thresholds.
- Cold stimulation induced analgesia and increased heart rate in term-born and less-exposed preterm children.
- Preterm children with numerous neonatal painful procedures showed blunted heart rate and pain sensitivity responses.
Conclusions:
- Early extensive pain exposure in preterm infants does not enhance pain sensitivity but impairs endogenous pain modulation.
- Neonatal pain frequency affects the development of pain modulatory mechanisms and cardiac reactivity to stimuli.
Abstract:
Prematurity is known to affect the development of various neurophysiological systems, including the maturation of pain and cardiac circuits. The purpose of this study was to see if numerous painful interventions, experienced soon after birth, affect counterirritation-induced analgesia (triggered using the cold pressor test) later in life. A total of 26 children, between the ages of 7 and 11 participated in the study. Children were divided into three groups, according to their birth status (i.e., term-born, born preterm and exposed to numerous painful interventions, or born preterm and exposed to few painful interventions). Primary outcome measures were heat pain thresholds, heat sensitivity scores, and cardiac reactivity. Results showed that preterm children and term-born children had comparable pain thresholds. Exposure to conditioning cold stimulation significantly increased heart rate and significantly decreased the thermal pain sensitivity of term-born children. These physiological reactions were also observed among preterm children who were only exposed to a few painful interventions at birth. Changes in heart rate and pain sensitivity in response to conditioning cold stimulation were not observed in preterm children that had been exposed to numerous painful procedures during the neonatal period. These results suggest that early pain does not lead to enhanced pain sensitivity when premature babies become children, but that their endogenous pain modulatory mechanisms are not as well developed as those of children not exposed to noxious insult at birth. Greater frequency of painful procedures also dampened the rise in heart rate normally observed when experimental pain is experienced.
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