central nervous systemmicroglial activationmicroglial cellsneuroimmune signalingphagocytosis
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Abstract (AI)
Microglial cells are the resident macrophages in the central nervous system. These cells of mesodermal/mesenchymal origin migrate into all regions of the central nervous system, disseminate through the brain parenchyma, and acquire a specific ramified morphological phenotype termed "resting microglia." Recent studies indicate that even in the normal brain, microglia have highly motile processes by which they scan their territorial domains. By a large number of signaling pathways they can communicate with macroglial cells and neurons and with cells of the immune system. Likewise, microglial cells express receptors classically described for brain-specific communication such as neurotransmitter receptors and those first discovered as immune cell-specific such as for cytokines. Microglial cells are considered the most susceptible sensors of brain pathology. Upon any detection of signs for brain lesions or nervous system dysfunction, microglial cells undergo a complex, multistage activation process that converts them into the "activated microglial cell." This cell form has the capacity to release a large number of substances that can act detrimental or beneficial for the surrounding cells. Activated microglial cells can migrate to the site of injury, proliferate, and phagocytose cells and cellular compartments.
Key Findings
1
Activated microglia migrate, proliferate, and phagocytose cells or cellular compartments while releasing substances that can produce either beneficial or detrimental effects on surrounding cells.
2
In the normal brain, morphologically ramified microglia continuously scan their territorial domains through highly motile cellular processes.
3
Microglia act as highly sensitive sensors of brain pathology and undergo a complex, multistage activation process when lesions or dysfunction are detected.
4
Microglia are resident macrophages of the central nervous system that originate from mesodermal/mesenchymal precursors and populate the brain parenchyma.
5
Microglia communicate with neurons, macroglial cells, and immune cells using diverse signaling pathways and both neurotransmitter and cytokine receptors.
Research Object
microglial cells in the central nervous system
Research Subject
their physiological surveillance, intercellular signaling, and multistage activation responses to brain lesions or nervous system dysfunction, including migration, proliferation, phagocytosis, and release of bioactive substances
Publication Details
Publication Date
2011-04-01
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