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Signaling in glial development: differentiation migration and axon guidance.

机译:胶质细胞发育的信号:分化迁移和轴突指导。

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摘要

Glial cells have diverse functions that are necessary for the proper development and function of complex nervous systems. During development, a variety of reciprocal signaling interactions between glia and neurons dictate all parts of nervous system development. Glia may provide attractive, repulsive, or contact-mediated cues to steer neuronal growth cones and ensure that neurons find their appropriate synaptic targets. In fact, both neurons and glia may act as migrational substrates for one another at different times during development. Also, the exchange of trophic signals between glia and neurons is essential for the proper bundling, fasciculation, and ensheathement of axons as well as the differentiation and survival of both cell types. The growing number of links between glial malfunction and human disease has generated great interest in glial biology. Because of its relative simplicity and the many molecular genetic tools available, Drosophila is an excellent model organism for studying glial development. This review will outline the roles of glia and their interactions with neurons in the embryonic nervous system of the fly.
机译:胶质细胞具有多种功能,这些功能是复杂神经系统正常发育和功能所必需的。在发育过程中,神经胶质细胞和神经元之间的各种交互信号相互作用决定了神经系统发育的所有部分。胶质细胞可以提供引诱,排斥或接触介导的线索来操纵神经元生长锥,并确保神经元找到合适的突触靶标。实际上,神经元和神经胶质细胞在发育过程中的不同时间都可以作为彼此的迁移底物。同样,神经胶质细胞和神经元之间的营养信号交换对于轴突的正确束缚,束缚和增强以及两种细胞类型的分化和存活至关重要。胶质细胞功能障碍和人类疾病之间越来越多的联系引起了人们对胶质生物学的极大兴趣。由于其相对简单和可用的许多分子遗传学工具,果蝇是研究神经胶质发育的优秀模型生物。这篇综述将概述胶质细胞的作用及其与果蝇胚胎神经系统中神经元的相互作用。

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