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Published on: April 13, 2017
Cerebellar microglia: On the edge between neuroinflammation and neuroregulation
Marina S Dukhinova1, Jingwen Guo2, Enwei Shen2
1Center for Brain Health, the Fourth Affiliated Hospital of School of Medicine, and International School of Medicine, International Institute of Medicine, Zhejiang University, Yiwu, Zhejiang Province, China.
Insights
Cerebellar microglia, immune cells in the brain, play key roles in cognitive and emotional functions. Understanding their specialized functions offers new therapeutic targets for neurological disorders.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- The cerebellum's role extends beyond motor control to cognition and emotion.
- Cerebellar microglia exhibit unique phenotypes and are crucial in the brain's immune response.
- These immune cells interact with intrinsic and systemic factors, influencing cerebellar structure and function.
Purpose of the Study:
- To review the multifaceted roles of cerebellar microglia in the neuroinflammatory and metabolic landscape of the cerebellum.
- To explore the molecular and cellular mechanisms underlying microglial function in cerebellar adaptation and neuronal activity.
- To highlight potential therapeutic strategies targeting cerebellar microglia for neuroinflammatory conditions.
Main Methods:
- Literature review synthesizing current research on cerebellar microglia.
- Analysis of studies investigating microglial phenotypes, functions, and interactions within the cerebellum.
- Examination of evidence linking cerebellar microglia to neurological and systemic disorders.
Main Results:
- Cerebellar microglia mature early and display specialized, highly immunogenic phenotypes.
- These cells contribute to cerebellar compartmentalization and respond dynamically to microenvironmental changes.
- Microglia modulate neuronal activity and cerebellar structure in both health and disease.
Conclusions:
- Cerebellar microglia are critical regulators of the cerebellar microenvironment, influencing neuroinflammation and neuronal function.
- Targeting cerebellar microglia presents a promising avenue for treating a spectrum of neurological and systemic conditions.
- Further research is needed to fully elucidate microglial mechanisms in cerebellar circuitry and therapeutic potential.
Abstract:
The cerebellum is receiving increasing attention for its cognitive, emotional, and social functions, as well as its unique metabolic profiles. Cerebellar microglia exhibit specialized and highly immunogenic phenotypes under both physiological and pathological conditions. These immune cells communicate with intrinsic and systemic factors and contribute to the structural and functional compartmentalization of the cerebellum. In this review, we discuss the roles of microglia in the cerebellar microenvironment, neuroinflammation, cerebellar adaptation, and neuronal activity, the associated molecular and cellular mechanisms, and potential therapeutic strategies targeting cerebellar microglia in the context of neuroinflammation. Future directions and unresolved questions in this field are further highlighted, particularly regarding therapeutic interventions targeting cerebellar microglia, functional mechanisms and activities of microglia in the cerebellar circuitry, neuronal connectivity, and neurofunctional outcomes of their activity. Cerebellar morphology and neuronal performance are influenced by both intrinsic and systemic factors that are actively monitored by microglia in both healthy and diseased states. Under pathological conditions, local subsets of microglia exhibit diverse responses to the altered microenvironment that contribute to the structural and functional compartmentalization of the cerebellum. Microglia in the cerebellum undergo early maturation during the embryonic stage and display specialized, highly immunogenic phenotypes. In summary, cerebellar microglia have the capacity to serve as regulatory tools that influence outcomes across a wide range of neurological and systemic conditions, including neurodevelopmental, neurodegenerative, metabolic, and stress-related disorders.
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