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gliogenesis : ウィキペディア英語版
gliogenesis
Gliogenesis is the generation of non-neuronal glia populations derived from multipotent neural stem cells.

==Overview==
Gliogenesis results in the formation of non-neuronal glia populations derived from multipotent neural stem cells. In this capacity, glial cells provide multiple functions to both the central nervous system (CNS) and the peripheral nervous system (PNS). Subsequent differentiation of glial cell populations results in function-specialized glial lineages. Glial cell-derived astrocytes are specialized lineages responsible for modulating the chemical environment by altering ion gradients and neurotransmitter transduction. Similarly derived, oligodendrocytes secrete myelin for axon insulation and electric signal transduction. Finally, microglial cells are derived from glial precursors and carry-out macrophage like properties to remove cellular and foreign debris within the central nervous system ref. Functions of glial-derived cell lineages are reviewed by Baumann and Hauw.〔Baumann N, Hauw JJ. (1979) Review on the properties of glial cells of the central nervous system. Sem Hop. 55(35-36): 1653-61.〕 Gliogenesis itself, and differentiation of glial-derived lineages are activated upon stimulation of specific signaling cascades. Similarly, inhibition of these pathways is controlled by distinct signaling cascades that control proliferation and differentiation. Thus, elaborate intracellular-mechanisms based on environmental signals are present to regulate the formation of these cells. As regulation is much more known in the CNS, its mechanisms and components will be focused on here. Understanding the mechanisms in which gliogenesis is regulated provides the potential to harness the ability to control the fate of glial cells and, consequently, the ability to reverse neurodegenerative diseases.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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