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Role of Microglia in Neuropathic Pain
Miltiades Y Karavis1, Ioanna Siafaka2, Athina Vadalouca2
1Musculoskeletal Physiotherapy Research Laboratory, Department of Physiotherapy, University of West Attica, Athens, GRC.
Abstract:
Microglial cells are specialized macrophage cells of the central nervous system responsible for the innate immunity of the spinal cord and the brain. They protect the brain and spinal cord from invaders, microbes, demyelination, trauma and remove defective cells and neurons. For immune protection, microglial cells possess a significant number of receptors and chemical mediators that allow them to communicate rapidly and specifically with all cells of the nervous tissue. The contribution of microglia in neuropathic pain challenges conventional concepts toward neurons being the only structure responsible for the pathophysiological changes that drive neuropathic pain. The present study is a narrative review focusing on the literature concerning the complex interaction between neurons and microglia in the development of neuropathic pain. Injury in the peripheral or central nervous system may result in maladaptive changes in neurons and microglial cells. In neuropathic pain, microglial cells have an important role in initiating and maintenance of pain and inflammation. The interaction between neural and microglial cells has been proven extremely crucial for chronic pain. The study of individual mechanisms at the level of the spinal cord and the brain is an interesting and groundbreaking research challenge. Elucidation of the mechanisms by which neurons and immune cells interact, could constitute microglial cells a new therapeutic target for the treatment of neuropathic pain.
Insights
Microglia, the brain's immune cells, play a crucial role in neuropathic pain by interacting with neurons. Understanding this neuro-immune crosstalk offers new therapeutic targets for chronic pain management.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglial cells are the primary immune cells in the central nervous system, responsible for innate immunity.
- They protect the brain and spinal cord from pathogens, injury, and cellular debris.
- Microglia possess receptors and mediators for rapid communication with nervous tissue cells.
Purpose of the Study:
- To review the literature on the complex interaction between neurons and microglia in neuropathic pain.
- To challenge the neuron-centric view of neuropathic pain pathophysiology.
- To highlight the role of microglia in initiating and maintaining pain and inflammation.
Main Methods:
- Narrative review of existing scientific literature.
- Focus on studies examining neuro-immune interactions in neuropathic pain.
- Analysis of mechanisms at the spinal cord and brain levels.
Main Results:
- Microglial cells are integral to the development and maintenance of neuropathic pain.
- Maladaptive changes in both neurons and microglia occur after nervous system injury.
- The interaction between neural and microglial cells is critical for chronic pain states.
Conclusions:
- Microglia significantly contribute to neuropathic pain, challenging traditional views.
- Understanding neuro-microglial interactions is key to unraveling chronic pain mechanisms.
- Microglial cells represent a promising therapeutic target for neuropathic pain treatment.
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