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Published on: April 13, 2017
The Dual Role of Microglia in Multiple Sclerosis and its Implications for Diagnostics and Repair
Melissa T Goulart1, Davi T U Queiroz2, Fabíola M Ribeiro1
1Department of Biochemistry and Immunology, Institute of Biological Sciences, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil.
Abstract:
Microglia play a crucial role in the development, immune surveillance, and repair of the central nervous system. These cells play a multifaceted role in multiple sclerosis (MS), with evidence suggesting that microglia can promote both active inflammation and remyelination. For instance, it has been shown that microglia can support the development of oligodendrocytes and phagocytose myelin debris, thus aiding in proper remyelination. However, microglia overactivation in MS lesions exacerbates neuroinflammation by releasing inflammatory cytokines and facilitating the activation of astrocytes and immune cells, promoting demyelination and, ultimately, driving MS pathology. In fact, it has been shown that there is a correlation between activated microglia patterns and the chronicity of MS. Thus, although it is difficult to be certain whether these cells are friends or foes, there is no doubt that microglia will be a relevant target for MS diagnosis and treatment in the future, when further research will help to clarify the role of these cells in MS. MRI and PET scan allow evaluation of microglia/macrophages biomarkers, facilitating the clinical assessment of a patient's disease stage. Moreover, new microglia-specific markers are being discovered, which will increase diagnostic precision, helping to identify active and chronic MS lesions. Because microglia are involved in all MS phases, these cells are also an important drug target. In this review, we focus on the current understanding of the role of microglia in MS progression as well as on the evidence supporting both inflammatory and reparative functions of these cells. We will also review how microglia may yield new biomarkers for MS diagnosis and serve as a potential target for therapy.
Insights
Microglia are key players in multiple sclerosis (MS), acting as both drivers of inflammation and promoters of repair. Understanding their dual role is crucial for developing new diagnostic tools and therapies for MS.
Area of Science:
- Neuroimmunology
- Central Nervous System Biology
Background:
- Microglia are immune cells of the central nervous system.
- They are involved in immune surveillance, development, and repair.
- Their role in multiple sclerosis (MS) is complex, with both pro-inflammatory and reparative functions.
Purpose of the Study:
- To review the current understanding of microglia's role in MS progression.
- To examine evidence for both inflammatory and reparative functions of microglia in MS.
- To discuss microglia as potential biomarkers and therapeutic targets for MS.
Main Methods:
- Literature review of studies on microglia in multiple sclerosis.
- Analysis of evidence for microglia-mediated inflammation and remyelination.
- Evaluation of current and emerging diagnostic and therapeutic strategies targeting microglia.
Main Results:
- Microglia can promote central nervous system inflammation and demyelination in MS by releasing cytokines.
- Microglia also support remyelination by aiding oligodendrocyte development and clearing myelin debris.
- Activated microglia patterns correlate with MS chronicity.
Conclusions:
- Microglia exhibit a dual role in MS, contributing to both pathology and repair.
- Microglia represent promising targets for future MS diagnosis and therapy.
- Advanced imaging (MRI, PET) and novel markers aid in assessing microglia activity and MS stage.

