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A Mast Cell-Specific Receptor Is Critical for Granuloma Induced by Intrathecal Morphine Infusion
Tao Zhang1, Rui Liu1,2, Delu Che1
1School of Pharmacy, Xi'an Jiaotong University, Xi'an 710061, China.
Abstract:
Intrathecal morphine infusion is often applied to treat chronic pain related to cancer and other conditions. However, persistent pain can be caused by nerve compression because of granuloma formation. In this study, a mouse model of morphine-induced granuloma formation by intrathecal catheterization morphine infusion into the atlanto-occipital membrane of the foramen magnum was established in wild-type mice, MrgprB2 mutant (MrgprB2-/-) mice, and in mast cell-deficient W-sash c-kit mutant (KitW-sh/W-sh) mice. Heat-related pain after surgery was performed to investigate the antipain effect of morphine. H&E staining and immunofluorescence staining of the spinal cord were applied to analyze the mechanism of granuloma formation. Morphine-induced mast cell degranulation was assessed by measuring the Ca2+ influx and mediator release. Anaphylactoid reactions were measured after s.c. morphine infusion to the paws. Chemokine release by mast cells was determined by Human XL Cytokine Array. Experiments with wild-type, MrgprB2 mutant, and mast cell-deficient W-sash c-kit mutant mice demonstrated that morphine activated mast cells and inflammatory cell aggregation through MrgprB2 in intrathecal infusion sites. The chemokine production of human mast cells demonstrated that granuloma formation is correlated with chemokines release. In addition, morphine activated mouse primary mast cells and de novo chemokine synthesis via the MRGPRX2 in human LAD2 cells. We concluded that granuloma formation during intrathecal morphine infusion was associated with MrgprB2/X2. Reducing MRGPRX2 potentially blocks morphine-induced side effects, including granuloma formation.
Insights
Morphine intrathecal infusion can cause granuloma formation and persistent pain. This study found morphine activates mast cells via MrgprB2, leading to granuloma formation and pain. Targeting MRGPRX2 may reduce these side effects.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Intrathecal morphine infusion is a common treatment for chronic pain.
- Granuloma formation at the infusion site can lead to nerve compression and persistent pain.
- The mechanisms underlying morphine-induced granuloma formation are not fully understood.
Purpose of the Study:
- To investigate the mechanism of morphine-induced granuloma formation following intrathecal catheterization.
- To explore the role of MrgprB2 and mast cells in this process.
- To assess the potential of targeting MrgprB2/X2 to mitigate morphine-induced side effects.
Main Methods:
- Establishment of a mouse model for intrathecal morphine infusion.
- Utilized wild-type, MrgprB2 mutant, and mast cell-deficient mice.
- Histological analysis (H&E, immunofluorescence), Ca2+ influx, mediator release, and cytokine array analysis.
Main Results:
- Morphine activated mast cells and inflammatory cell aggregation via MrgprB2 at intrathecal infusion sites.
- Granuloma formation correlated with chemokine release from mast cells.
- Morphine induced mast cell activation and chemokine synthesis through MRGPRX2 in human cells.
Conclusions:
- Granuloma formation during intrathecal morphine infusion is mediated by the MrgprB2/X2 pathway.
- Mast cell activation is a key component in this process.
- Targeting MRGPRX2 may offer a strategy to prevent morphine-induced side effects like granuloma formation.
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