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Updated: Apr 28, 2026

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
The Netrin-1 receptor DCC is a regulator of maladaptive responses to chronic morphine administration
De-Yong Liang, Ming Zheng, Yuan Sun
1Anesthesiology Service, Veterans Affairs Palo Alto Health Care System, 3801 Miranda Avenue, Palo Alto, USA. djclark@stanford.edu.
Background:
Opioids are the cornerstone of treatment for moderate to severe pain, but chronic use leads to maladaptations that include: tolerance, dependence and opioid-induced hyperalgesia (OIH). These responses limit the utility of opioids, as well as our ability to control chronic pain. Despite decades of research, we have no therapies or proven strategies to overcome this problem. However, murine haplotype based computational genetic mapping and a SNP data base generated from analysis of whole-genome sequence data (whole-genome HBCGM), provides a hypothesis-free method for discovering novel genes affecting opioid maladaptive responses.
Results:
Whole genome-HBCGM was used to analyze phenotypic data on morphine-induced tolerance, dependence and hyperalgesia obtained from 23 inbred strains. The robustness of the genetic mapping results was analyzed using strain subsets. In addition, the results of analyzing all of the opioid-related traits together were examined. To characterize the functional role of the leading candidate gene, we analyzed transgenic animals, mRNA and protein expression in behaviorally divergent mouse strains, and immunohistochemistry in spinal cord tissue. Our mapping procedure identified the allelic pattern within the netrin-1 receptor gene (Dcc) as most robustly associated with OIH, and it was also strongly associated with the combination of the other maladaptive opioid traits analyzed. Adult mice heterozygous for the Dcc gene had significantly less tendency to develop OIH, become tolerant or show evidence of dependence after chronic exposure to morphine. The difference in opiate responses was shown not to be due to basal or morphine-stimulated differences in the level of Dcc expression in spinal cord tissue, and was not associated with nociceptive neurochemical or anatomical alterations in the spinal cord or dorsal root ganglia in adult animals.
Conclusions:
Whole-genome HBCGM is a powerful tool for identifying genes affecting biomedical traits such as opioid maladaptations. We demonstrate that Dcc affects tolerance, dependence and OIH after chronic opioid exposure, though not through simple differences in expression in the adult spinal cord.
Insights
Chronic opioid use causes tolerance, dependence, and opioid-induced hyperalgesia (OIH). Genetic mapping identified the netrin-1 receptor gene (Dcc) as a key factor in these maladaptive responses.
Area of Science:
- Genetics
- Neuroscience
- Pharmacology
Background:
- Opioids are crucial for managing severe pain but lead to tolerance, dependence, and opioid-induced hyperalgesia (OIH) with chronic use.
- These opioid maladaptations limit treatment efficacy and pain management strategies.
- Current therapies to overcome these issues are lacking, necessitating novel approaches.
Purpose of the Study:
- To identify novel genes influencing opioid maladaptive responses using a hypothesis-free genetic mapping approach.
- To investigate the role of candidate genes in the development of tolerance, dependence, and OIH.
- To explore the functional significance of identified genes in animal models.
Main Methods:
- Whole-genome haplotype-based computational genetic mapping (HBCGM) was applied to phenotypic data from 23 inbred mouse strains.
- Analysis included morphine-induced tolerance, dependence, and hyperalgesia.
- Candidate gene functional characterization involved transgenic animals, gene expression analysis, and immunohistochemistry.
Main Results:
- Whole-genome HBCGM identified the netrin-1 receptor gene (Dcc) as strongly associated with OIH and other opioid maladaptations.
- Mice heterozygous for the Dcc gene exhibited reduced development of OIH, tolerance, and dependence following chronic morphine exposure.
- These effects were independent of basal or morphine-stimulated Dcc expression levels in the spinal cord.
Conclusions:
- Whole-genome HBCGM is an effective tool for discovering genes involved in complex biomedical traits like opioid maladaptations.
- The Dcc gene plays a significant role in mediating tolerance, dependence, and OIH after chronic opioid exposure.
- The mechanism by which Dcc influences these responses does not involve simple expression differences in the adult spinal cord.
Related Concept Videos
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Opioid Receptors: Overview
Opioid Analgesics: Morphine and Other Natural Cogeners
Drug Abuse and Addiction: Pharmacological Phenomena
CNS Depressants: Alcohol and Nicotine
Opioid Analgesics: Synthetic and Semisynthetic Opioids

