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Updated: Jul 7, 2026

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
Neonatal morphine enhances nociception and decreases analgesia in young rats
Guo Hua Zhang1, Sarah M Sweitzer
1Department of Pharmacology, Physiology and Neuroscience, University of South Carolina School of Medicine, Columbia, SC 29208, USA.
Insights
Neonatal morphine exposure in rats led to long-term pain hypersensitivity and reduced pain relief. This highlights the need to study prenatal morphine
Area of Science:
- Neuroscience
- Developmental Biology
- Pharmacology
Background:
- Neonatal pain management often involves opioids.
- Opioid exposure in infants can lead to opioid abstinence syndrome.
- Long-term effects of neonatal opioid exposure on pain processing are poorly understood.
Purpose of the Study:
- To investigate the long-term impact of neonatal morphine exposure on nociception and analgesia.
- To assess changes in pain sensitivity and the body's response to pain relief after early morphine exposure.
Main Methods:
- Rats received daily morphine or saline injections from postnatal days 1-9.
- Mechanical and thermal nociception were tested at various postnatal ages.
- Morphine dose-response and stress-induced analgesia were evaluated.
Main Results:
- Morphine-exposed rats showed reduced pain sensitivity until postnatal day 29.
- Analgesia from morphine was less effective in exposed rats.
- Stress-induced pain relief was diminished in exposed rats at an earlier time point.
Conclusions:
- Neonatal morphine exposure, akin to third-trimester gestation, causes lasting pain hypersensitivity.
- This exposure impairs the effectiveness of morphine for pain relief and reduces stress-induced analgesia.
- Further research is needed on the effects of prenatal morphine exposure on pediatric pain and analgesia.
Abstract:
The recognition of the impact of neonatal pain experience on subsequent sensory processing has led to the increased advocacy for the use of opioids for pain relief in infants. However, following long-term opioid exposure in intensive care units more than 48% of infants exhibited behaviors indicative of opioid abstinence syndrome, a developmentally equivalent set of behaviors to opioid withdrawal as seen in adults. Little is known about the long-term influence of repeated neonatal morphine exposure on nociception and analgesia. To investigate this, we examined mechanical and thermal nociception on postnatal days 11, 13, 15, 19, 24, 29, 39 and 48 following subcutaneous administration of morphine (3 mg/kg) once daily on postnatal days 1-9. The cumulative morphine dose-response was assessed on postnatal days 20 and 49, and stress-induced analgesia was assessed on postnatal days 29 and 49. Both basal mechanical and thermal nociception in neonatal, morphine-exposed rats were significantly lower than those in saline-exposed, handled-control rats and naive rats until P29. A rightward-shift of cumulative dose-response curves for morphine analgesia upon chronic neonatal morphine was observed both on P20 and P49. The swim stress-induced analgesia was significantly decreased in neonatal morphine-exposed rats on P29, but not on P49. These data indicate that morphine exposure equivalent to the third trimester of gestation produced prolonged pain hypersensitivity, decreased morphine antinociception, and decreased stress-induced analgesia. The present study illustrates the need to examine the long-term influence of prenatal morphine exposure on pain and analgesia in the human pediatric population.
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