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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
Peripheral administration of morphine attenuates postincisional pain by regulating macrophage polarization through
Kohei Godai, Maiko Hasegawa-Moriyama1, Tae Kurimoto
1Department of Anesthesiology and Critical Care Medicine, Graduate School of Medical and Dental Sciences, Kagoshima University, Kagoshima 890-8520, Japan. hase-mai@m3.kufm.kagoshima-u.ac.jp.
Background:
Macrophage infiltration to inflammatory sites promotes wound repair and may be involved in pain hypersensitivity after surgical incision. We recently reported that the development of hyperalgesia during chronic inflammation is regulated by macrophage polarity, often referred to as proinflammatory (M1) or anti-inflammatory (M2) macrophages. Although opioids such as morphine are known to alter the inflammatory milieu of incisional wounds through interactions with immunocytes, the macrophage-mediated effects of morphine on the development of postincisional pain have not been well investigated. In this study, we examined how morphine alters pain hypersensitivity through phenotypic shifts in local macrophages during the course of incision-induced inflammation.
Results:
Local administration of morphine in the early phase, but not in the late phase alleviated mechanical hyperalgesia, and this effect was reversed by clodronate-induced peripheral depletion of local macrophages. At the morphine-injected incisional sites, the number of pro-inflammatory F4/80+iNOS+M1 macrophages was decreased during the course of pain development whereas increased infiltration of wound healing F4/80+CD206+M2 macrophages was observed during the early phase. Morphine increased the gene expression of endogenous opioid, proenkephalin, and decreased the pronociceptive cytokine, interleukin-1β. Heme oxygenase (HO)-1 promotes the differentiation of macrophages to the M2 phenotype. An inhibitor of HO-1, tin protoporphyrin reversed morphine-induced analgesic effects and the changes in macrophage phenotype. However, local expression levels of HO-1 were not altered by morphine. Conversely, cyclooxygenase (COX)-2, primarily produced from peripheral macrophages in acute inflammation states, was up-regulated in the early phase at morphine-injected sites. In addition, the analgesic effects and a phenotype switching of infiltrated macrophages by morphine was reversed by local administration of a COX inhibitor, indomethacin.
Conclusions:
Local administration of morphine alleviated the development of postincisional pain, possibly by altering macrophage polarity at the incisional sites. A morphine-induced shift in macrophage phenotype may be mediated by a COX-2-dependent mechanism. Therefore, μ-opioid receptor signaling in macrophages may be a potential therapeutic target during the early phase of postincisional pain development.
Insights
Morphine alleviates postincisional pain by shifting macrophages from pro-inflammatory (M1) to anti-inflammatory (M2) phenotypes. This effect, observed in the early phase, involves cyclooxygenase-2 (COX-2) and targets μ-opioid receptor signaling in macrophages.
Area of Science:
- Immunology
- Neuroscience
- Pain Research
Background:
- Macrophage infiltration at inflammatory sites aids wound repair but can cause pain hypersensitivity.
- Macrophage polarity (M1/M2) influences hyperalgesia during chronic inflammation.
- Morphine's effects on incisional wound inflammation and macrophage interactions are not fully understood.
Purpose of the Study:
- To investigate how morphine alters pain hypersensitivity by inducing macrophage phenotypic shifts.
- To examine the role of macrophage polarity in morphine's analgesic effects on postincisional pain.
Main Methods:
- Local morphine administration in early and late phases of incisional inflammation.
- Macrophage depletion using clodronate.
- Analysis of macrophage phenotypes (F4/80+iNOS+M1 and F4/80+CD206+M2).
- Measurement of gene expression (proenkephalin, IL-1β, HO-1, COX-2).
- Inhibition of Heme oxygenase (HO)-1 and Cyclooxygenase (COX)-2.
Main Results:
- Early-phase morphine administration reduced mechanical hyperalgesia, an effect reversed by macrophage depletion.
- Morphine decreased M1 macrophages and increased M2 macrophages at incisional sites.
- Morphine modulated gene expression, decreasing pro-inflammatory IL-1β and increasing proenkephalin.
- COX-2 inhibition (indomethacin) reversed morphine's analgesic effects and M2 shift.
- HO-1 inhibition did not affect morphine's analgesic effects or M2 shift.
Conclusions:
- Local morphine alleviates early postincisional pain by shifting macrophage polarity from M1 to M2.
- The morphine-induced macrophage phenotype switch is likely mediated by a COX-2-dependent mechanism.
- Targeting μ-opioid receptor signaling in macrophages presents a potential therapeutic strategy for early postincisional pain.
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