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Collecting And Measuring Wound Exudate Biochemical Mediators In Surgical Wounds
Published on: October 20, 2012
Morphine reduces local cytokine expression and neutrophil infiltration after incision
J David Clark1, Xiaoyou Shi, Xiangqi Li
1Department of Anesthesia, Stanford University School of Medicine, Stanford, CA, USA. djclark@stanford.edu
Background:
Inflammation and nociceptive sensitization are hallmarks of tissue surrounding surgical incisions. Recent studies demonstrate that several cytokines may participate in the enhancement of nociception near these wounds. Since opioids like morphine interact with neutrophils and other immunocytes, it is possible that morphine exerts some of its antinociceptive action after surgical incision by altering the vigor of the inflammatory response. On the other hand, keratinocytes also express opioid receptors and have the capacity to produce cytokines after injury. Our studies were directed towards determining if opioids alter cytokine production near incisions and to identify cell populations responsible for producing these cytokines.
Results:
A murine incisional model was used to measure the effects of acute morphine administration (0.1-10 mg/kg) on nociceptive thresholds, neutrophil infiltration and cytokine production in hind paw skin 30 minutes and 2 hours after incision. Incised hind paws displayed profound allodynia which was reduced by morphine (0.1-10 mg/kg) in the 2 hours following incision. Skin samples harvested from these mice showed enhanced levels of 5 cytokines: IL-1 beta, IL-6, tumor necrosis factor alpha (TNFalpha), granulocyte colony stimulating factor (G-CSF) and keratinocyte-derived cytokine (KC). Morphine reduced these incision-stimulated levels. Separate analyses measuring myeloperoxidase (MPO) and using immunohistochemistry demonstrated that morphine dose-dependently reduced the infiltration of neutrophils into the peri-incisional tissue. The dose of morphine required for reduction of cytokine accumulation, however, was below that required for inhibition of peri-incisional neutrophil infiltration. Additional immunohistochemical studies revealed wound edge keratinocytes as being an important source of cytokines in the acute phase after incision.
Conclusion:
Acute morphine administration of doses as low as 0.1 mg/kg reduces peri-incisional cytokine expression. A reduction in neutrophil infiltration does not provide a complete explanation for this effect, and keratinocytes may be responsible for some incision area cytokine production. These studies suggest that morphine may alter the inflammatory milieu of incisional wounds, but these alterations do not likely contribute significantly to analgesia in the acute setting.
Insights
Morphine reduces inflammation and cytokine levels around surgical incisions. While it decreases neutrophil infiltration, keratinocytes also contribute to cytokine production, suggesting morphine alters the wound environment but may not significantly impact acute pain relief.
Area of Science:
- Pain research
- Inflammation and immunology
- Surgical recovery
Background:
- Surgical incisions cause inflammation and pain sensitization.
- Cytokines play a role in heightened nociception near wounds.
- Opioids like morphine interact with immune cells, potentially influencing inflammation.
Purpose of the Study:
- To investigate if opioids alter cytokine production near surgical incisions.
- To identify specific cell types responsible for cytokine production post-incision.
- To determine the role of morphine in modulating the inflammatory response to surgical wounds.
Main Methods:
- Utilized a murine incisional model to assess nociceptive thresholds, neutrophil infiltration, and cytokine levels.
- Administered acute morphine at varying doses (0.1-10 mg/kg).
- Analyzed hind paw skin tissue 30 minutes and 2 hours post-incision using myeloperoxidase assays and immunohistochemistry.
Main Results:
- Morphine reduced allodynia and decreased levels of key cytokines (IL-1β, IL-6, TNFα, G-CSF, KC) in incised paws.
- Morphine dose-dependently reduced neutrophil infiltration into peri-incisional tissue.
- Keratinocytes were identified as a significant source of cytokines in the acute wound setting.
Conclusions:
- Low-dose morphine (0.1 mg/kg) effectively reduces peri-incisional cytokine expression.
- Reduced neutrophil infiltration alone does not fully explain morphine's effect on cytokines.
- Morphine may alter the wound's inflammatory environment, but this likely has minimal impact on acute analgesia.
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