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Rapid Isolation of Dorsal Root Ganglion Macrophages
Published on: September 7, 2019
Macrophage-P2X4 receptors pathway is essential to persistent inflammatory muscle hyperalgesia onset, and is prevented
Graciana de Azambuja1, Fernando Moreira Simabuco2, Maria Cláudia Gonçalves de Oliveira1
1Universidade Estadual de Campinas (UNICAMP), Faculdade de Ciências Aplicadas, Laboratório de Estudos em Dor e Inflamação (LABEDI), Limeira, São Paulo, Brasil.
Abstract:
Peripheral inflammation may lead to severe inflammatory painful conditions. Macrophages are critical for inflammation; modulating related pathways could be an essential therapeutic strategy for chronic pain diseases. Here we hypothesized that 1) Macrophage-P2X4 receptors are involved in the transition from acute to persistent inflammatory muscle hyperalgesia and that 2) P2X4 activation triggers a pro-inflammatory phenotype leading to Interleukin-1β (IL-1β) increase. Once physical exercise prevents exacerbated inflammatory processes related to chronic diseases including chronic muscle pain, we also hypothesized that 3) physical exercise, through PPARγ receptors, prevents P2X4 receptors activation. With pharmacological behaviour, biomolecular analysis and swimming physical exercise in a mouse model of persistent inflammatory muscle hyperalgesia we demonstrated that P2X4 receptors are essential for transitioning from acute to persistent inflammatory muscle hyperalgesia; Phosphorylation of p38MAPK indicated P2X4 signalling activation associated with inflammatory macrophage and an increase of IL-1β expression in skeletal muscle; Exercise-PPARγ receptors prevented phosphorylation of p38MAPK in muscle tissue. Our findings suggest that exercise-PPARγ modulates the acute inflammatory phase of developing persistent muscle hyperalgesia by controlling p38MAPK-related P2X4 signalling. These highlight the great potential of modulating macrophage phenotypes and P2X4 receptors to prevent pain conditions and the ability of physical exercise to prevent inflammatory processes related to chronic muscle pain.
Insights
Physical exercise, via PPARγ receptors, prevents P2X4 receptor activation, mitigating inflammatory muscle pain. This research highlights exercise
Area of Science:
- Neuroscience
- Immunology
- Exercise Physiology
Background:
- Peripheral inflammation can cause severe pain conditions.
- Macrophages play a key role in inflammation and chronic pain.
- Modulating macrophage pathways offers therapeutic potential for pain management.
Purpose of the Study:
- Investigate the role of Macrophage-P2X4 receptors in acute to persistent inflammatory muscle hyperalgesia.
- Determine if P2X4 activation promotes a pro-inflammatory phenotype and Interleukin-1β (IL-1β) increase.
- Examine if physical exercise, via PPARγ receptors, prevents P2X4 receptor activation.
Main Methods:
- Pharmacological interventions
- Biomolecular analysis
- Swimming exercise in a mouse model of persistent inflammatory muscle hyperalgesia.
Main Results:
- P2X4 receptors are crucial for the transition from acute to persistent inflammatory muscle hyperalgesia.
- P2X4 signaling activation, indicated by p38MAPK phosphorylation, involves inflammatory macrophages and increased IL-1β in skeletal muscle.
- Exercise-activated PPARγ receptors prevented p38MAPK phosphorylation in muscle tissue.
Conclusions:
- Exercise-PPARγ signaling modulates the acute inflammatory phase of persistent muscle hyperalgesia by regulating p38MAPK-related P2X4 signaling.
- Targeting macrophage phenotypes and P2X4 receptors shows potential for preventing pain conditions.
- Physical exercise can prevent inflammatory processes associated with chronic muscle pain.
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