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The Role of Microglia in Prion Diseases: A Paradigm of Functional Diversity
Juliane Obst1, Emilie Simon1, Renzo Mancuso1
1Biological Sciences, University of Southampton, Southampton General HospitalSouthampton, United Kingdom.
Abstract:
Inflammation is a major component of neurodegenerative diseases. Microglia are the innate immune cells in the central nervous system (CNS). In the healthy brain, microglia contribute to tissue homeostasis and regulation of synaptic plasticity. Under disease conditions, they play a key role in the development and maintenance of the neuroinflammatory response, by showing enhanced proliferation and activation. Prion diseases are progressive chronic neurodegenerative disorders associated with the accumulation of the scrapie prion protein PrPSc, a misfolded conformer of the cellular prion protein PrPC. This review article provides the current knowledge on the role of microglia in the pathogenesis of prion disease. A large body of evidence shows that microglia can trigger neurotoxic pathways contributing to progressive degeneration. Yet, microglia are also crucial for controlling inflammatory, repair and regenerative processes. This dual role of microglia is regulated by multiple pathways and evidences the ability of these cells to polarize into distinct phenotypes with characteristic functions. The awareness that the neuroinflammatory response is inextricably involved in producing tissue damage as well as repair in neurodegenerative disorders, opens new perspectives for the modulation of the immune system. A better understanding of this complex process will be essential for developing effective therapies for neurodegenerative diseases, in order to improve the quality of life of patients and mitigating the personal, economic and social consequences derived from these diseases.
Insights
Microglia, the brain's immune cells, play a dual role in prion diseases, contributing to both neurodegeneration and repair. Understanding their complex functions is key to developing new therapies for these devastating neurodegenerative disorders.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Neuroinflammation is central to neurodegenerative diseases.
- Microglia are innate immune cells in the central nervous system (CNS) crucial for brain homeostasis and synaptic plasticity.
- In disease, microglia become activated, driving neuroinflammation and contributing to neurodegeneration.
Purpose of the Study:
- To review the current understanding of microglia's role in prion disease pathogenesis.
- To explore the dual functions of microglia in prion disease: neurotoxic and reparative.
- To highlight the potential for immunomodulatory therapies in neurodegenerative disorders.
Main Methods:
- This is a review article, synthesizing existing research.
- Evidence from numerous studies on microglia and prion disease was analyzed.
- The polarization of microglia into distinct functional phenotypes was examined.
Main Results:
- Microglia can initiate neurotoxic pathways, exacerbating prion disease progression.
- Microglia also play essential roles in controlling inflammation and promoting repair.
- Microglial function is regulated by complex pathways, allowing for distinct phenotypes.
Conclusions:
- Microglia exhibit a dual role in prion disease pathogenesis, contributing to both damage and repair.
- Understanding microglial polarization and function is critical for developing effective treatments.
- Targeting neuroinflammation offers new therapeutic avenues for prion and other neurodegenerative diseases.
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