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A murine model of opioid-induced hyperalgesia
- Source :
- Molecular Brain Research; January 2001, Vol. 86 Issue: 1-2 p56-62, 7p
- Publication Year :
- 2001
-
Abstract
- Controversies surround the possible long-term physiological and psychological consequences of opioid use. Analgesic tolerance and addiction are commonly at the center of these controversies, but other concerns exist as well. A growing body of evidence suggests that hyperalgesia caused by the chronic administration of opioids can occur in laboratory animals and in humans. In these studies we describe a murine model of opioid-induced hyperalgesia (OIH). After the treatment of mice for 6 days with implanted morphine pellets followed by their removal, both thermal hyperalgesia and mechanical allodynia were documented. Additional experiments demonstrated that prior morphine treatment also increased formalin-induced licking behavior. These effects were intensified by intermittent abstinence accomplished through administration of naloxone during morphine treatment. Experiments designed to determine if the μ-opioid receptor mediated OLH in our model revealed that the relatively-selective μ-opioid receptor agonist fentanyl induced the thermal hyperalgesia and mechanical allodynia characteristic of OIH when administered in intermittent boluses over 6 days. In complimentary experiments we found that CXBK mice which have reduced μ-opioid receptor binding displayed no significant OIH after morphine treatment. Finally, we explored the pharmacological sensitivities of OIH. We found that the N-methyl-d-aspartate (NMDA) receptor antagonist MK-801, the nitric oxide synthase (NOS) inhibitor NG-nitro-l-arginine methyl ester (l-NAME) and the heme oxygenase (HO) inhibitor tin protoporphyrin (Sn-P) dose-dependently reduced OIH in this model while the NSAID indomethacin had no effect. Thus we have characterized a murine model of OIH which will be useful in the pursuit of the molecular mechanisms underlying this phenomenon.
Details
- Language :
- English
- ISSN :
- 0169328X
- Volume :
- 86
- Issue :
- 1-2
- Database :
- Supplemental Index
- Journal :
- Molecular Brain Research
- Publication Type :
- Periodical
- Accession number :
- ejs2986248
- Full Text :
- https://doi.org/10.1016/S0169-328X(00)00260-6