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The role of the immune system in driving neuroinflammation
Author(s) -
Caitlín Ní Chasaide,
Marina A. Lynch
Publication year - 2020
Publication title -
brain and neuroscience advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.125
0
ISSN - 2398-2128
DOI - 10.1177/2398212819901082
Subject(s) - neuroinflammation , microglia , immune system , immunology , innate immune system , crosstalk , neuroscience , disease , context (archaeology) , biology , phenotype , alzheimer's disease , neuroimmunology , medicine , inflammation , pathology , gene , paleontology , biochemistry , physics , optics
Neuroinflammation is now recognised as an important contributory factor in the progression of Alzheimer’s disease and probably also in the early stages of the disease. It is likely that this derives largely from aberrant activation of microglia, the resident mononuclear phagocytes of the brain. These cells are responsible for physiological immune surveillance and clearance of pathogens in the central nervous system, but evidence indicates that in Alzheimer’s disease, microglial function is compromised, and this contributes to the pathology. It is unclear what factors cause the inappropriate activation of the microglia in Alzheimer’s disease, but one contributor may be infiltrating peripheral immune cells and these include macrophages and T cells. It has been suggested that both cell types modulate the phenotype of microglia, highlighting the importance of crosstalk between the innate and adaptive immune system in Alzheimer’s disease. This review outlines our current knowledge of how cells of the peripheral immune system, specifically macrophages and T cells, may modulate microglial phenotype in the context of Alzheimer’s disease and considers the impact on their function, especially phagocytic capacity.

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