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Reactive Microglia and Astrocytes as Therapeutic Targets in Prion Diseases
Natallia Makarava1, Rajesh Kushwaha1, Ilia V Baskakov2
1Department of Neurobiology, University of Maryland School of Medicine, Baltimore, MD, USA.
Abstract:
Prion diseases, also known as transmissible spongiform encephalopathies, are a group of fatal, transmissible neurodegenerative disorders affecting both humans and animals, with no available therapeutic treatments. Recent research highlights the critical involvement of reactive microglia and astrocytes in the pathogenesis of these diseases. This chapter will review emerging evidence on the harmful roles of reactive microglia and astrocytes in prion disease progression and explore potential therapeutic strategies aimed at targeting their reactive states. A particular focus will be on the therapeutic potential of modulating microglial phagocytic activity and its associated pathways. We will address the challenges in designing effective therapies, including the phenotypic diversity of glial cells, regional differences in brain strain tropism, intercellular communication between microglia and astrocytes, dynamic changes in microglial role throughout disease progression, and the identification of optimal intervention windows. Finally, we will consider the possibility that different mechanisms underlie neurodegeneration across prion strains and Creutzfeldt-Jakob disease (CJD) subtypes, highlighting the importance of developing combination therapies targeting multiple pathways.
Insights
Reactive microglia and astrocytes worsen prion diseases, fatal neurodegenerative disorders. Targeting glial cell activity, particularly microglial phagocytosis, offers promising therapeutic avenues for these untreatable conditions.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Prion diseases, or transmissible spongiform encephalopathies, are fatal neurodegenerative conditions with no current treatments.
- Reactive microglia and astrocytes play a significant role in the pathogenesis of prion diseases.
Purpose of the Study:
- To review the detrimental roles of reactive glial cells in prion disease progression.
- To explore therapeutic strategies targeting glial cell reactivity, focusing on microglial phagocytosis.
Main Methods:
- Literature review of emerging evidence on glial cell involvement in prion diseases.
- Analysis of therapeutic potential for modulating microglial phagocytic activity.
Main Results:
- Reactive microglia and astrocytes contribute to prion disease progression.
- Modulating microglial phagocytosis presents a potential therapeutic strategy.
Conclusions:
- Targeting reactive glial cells, especially microglial phagocytosis, offers a promising therapeutic direction for prion diseases.
- Developing combination therapies is crucial due to disease complexity and strain diversity.
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