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Updated: Mar 20, 2026

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
Morphine paradoxically prolongs neuropathic pain in rats by amplifying spinal NLRP3 inflammasome activation
Peter M Grace1, Keith A Strand2, Erika L Galer2
1Department of Psychology and Neuroscience, University of Colorado, Boulder, CO 80309; The Center for Neuroscience, University of Colorado, Boulder, CO 80309; Discipline of Pharmacology, School of Medicine, University of Adelaide, Adelaide, SA 5005, Australia; peter.grace@colorado.edu.
Abstract:
Opioid use for pain management has dramatically increased, with little assessment of potential pathophysiological consequences for the primary pain condition. Here, a short course of morphine, starting 10 d after injury in male rats, paradoxically and remarkably doubled the duration of chronic constriction injury (CCI)-allodynia, months after morphine ceased. No such effect of opioids on neuropathic pain has previously been reported. Using pharmacologic and genetic approaches, we discovered that the initiation and maintenance of this multimonth prolongation of neuropathic pain was mediated by a previously unidentified mechanism for spinal cord and pain-namely, morphine-induced spinal NOD-like receptor protein 3 (NLRP3) inflammasomes and associated release of interleukin-1β (IL-1β). As spinal dorsal horn microglia expressed this signaling platform, these cells were selectively inhibited in vivo after transfection with a novel Designer Receptor Exclusively Activated by Designer Drugs (DREADD). Multiday treatment with the DREADD-specific ligand clozapine-N-oxide prevented and enduringly reversed morphine-induced persistent sensitization for weeks to months after cessation of clozapine-N-oxide. These data demonstrate both the critical importance of microglia and that maintenance of chronic pain created by early exposure to opioids can be disrupted, resetting pain to normal. These data also provide strong support for the recent "two-hit hypothesis" of microglial priming, leading to exaggerated reactivity after the second challenge, documented here in the context of nerve injury followed by morphine. This study predicts that prolonged pain is an unrealized and clinically concerning consequence of the abundant use of opioids in chronic pain.
Insights
Short-term morphine use paradoxically prolonged neuropathic pain in rats by activating spinal NLRP3 inflammasomes. Targeting microglia with DREADD reversed this opioid-induced pain sensitization.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Opioid use for pain management is increasing without full understanding of consequences.
- Neuropathic pain mechanisms and opioid effects require further investigation.
Purpose of the Study:
- To investigate the long-term effects of morphine on neuropathic pain.
- To identify the underlying mechanisms of opioid-induced pain prolongation.
Main Methods:
- Morphine administration in male rats with chronic constriction injury (CCI).
- Pharmacological and genetic inhibition of spinal NOD-like receptor protein 3 (NLRP3) inflammasomes and interleukin-1β (IL-1β) release.
- In vivo selective inhibition of spinal dorsal horn microglia using Designer Receptor Exclusively Activated by Designer Drugs (DREADD).
Main Results:
- A short morphine course doubled CCI-allodynia duration, persisting months after opioid cessation.
- Morphine-induced pain prolongation was mediated by spinal NLRP3 inflammasomes and IL-1β.
- DREADD-mediated inhibition of microglia prevented and reversed morphine-induced persistent pain sensitization.
Conclusions:
- Microglia play a critical role in maintaining opioid-induced chronic pain.
- Early opioid exposure can lead to persistent neuropathic pain via microglial activation.
- Targeting microglial pathways offers a potential strategy for managing opioid-induced pain.
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