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果蝇神经系统中的神经元-胶质细胞相互作用。

Neuron-glia interaction in the Drosophila nervous system.

机构信息

Institut für Neuro- und Verhaltensbiologie, Universität Münster, Münster, Germany.

出版信息

Dev Neurobiol. 2021 Jul;81(5):438-452. doi: 10.1002/dneu.22737. Epub 2020 Mar 4.

Abstract

Animals are able to move and react in manifold ways to external stimuli. Thus, environmental stimuli need to be detected, information must be processed, and, finally, an output decision must be transmitted to the musculature to get the animal moving. All these processes depend on the nervous system which comprises an intricate neuronal network and many glial cells. Glial cells have an equally important contribution in nervous system function as their neuronal counterpart. Manifold roles are attributed to glia ranging from controlling neuronal cell number and axonal pathfinding to regulation of synapse formation, function, and plasticity. Glial cells metabolically support neurons and contribute to the blood-brain barrier. All of the aforementioned aspects require extensive cell-cell interactions between neurons and glial cells. Not surprisingly, many of these processes are found in all phyla executed by evolutionarily conserved molecules. Here, we review the recent advance in understanding neuron-glia interaction in Drosophila melanogaster to suggest that work in simple model organisms will shed light on the function of mammalian glial cells, too.

摘要

动物能够以多种方式对外界刺激做出反应和运动。因此,需要检测环境刺激,必须处理信息,最后,必须将输出决策传输到肌肉系统,使动物运动。所有这些过程都依赖于神经系统,它由复杂的神经元网络和许多神经胶质细胞组成。神经胶质细胞在神经系统功能中具有与神经元同等重要的作用。神经胶质细胞的作用多种多样,从控制神经元数量和轴突寻路到调节突触形成、功能和可塑性。神经胶质细胞代谢支持神经元,并有助于血脑屏障的形成。所有上述方面都需要神经元和神经胶质细胞之间广泛的细胞间相互作用。毫不奇怪,这些过程中的许多都存在于所有门中,由进化保守的分子执行。在这里,我们回顾了在理解果蝇中神经元-神经胶质细胞相互作用方面的最新进展,以表明在简单模式生物中的研究将有助于阐明哺乳动物神经胶质细胞的功能。

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