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昆虫神经发育过程中神经元与神经胶质细胞之间的关键相互作用。

Key interactions between neurons and glial cells during neural development in insects.

作者信息

Oland Lynne A, Tolbert Leslie P

机构信息

Arizona Research Laboratories Division of Neurobiology, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Annu Rev Entomol. 2003;48:89-110. doi: 10.1146/annurev.ento.48.091801.112654. Epub 2002 Jun 4.

Abstract

Nervous system function is entirely dependent on the intricate and precise pattern of connections made by individual neurons. Much of the insightful research into mechanisms underlying the development of this pattern of connections has been done in insect nervous systems. Studies of developmental mechanisms have revealed critical interactions between neurons and glia, the non-neuronal cells of the nervous system. Glial cells provide trophic support for neurons, act as struts for migrating neurons and growing axons, form boundaries that restrict neuritic growth, and have reciprocal interactions with neurons that govern specification of cell fate and axonal pathfinding. The molecular mechanisms underlying these interactions are beginning to be understood. Because many of the cellular and molecular mechanisms underlying neural development appear to be common across disparate insect species, and even between insects and vertebrates, studies in developing insect nervous systems are elucidating mechanisms likely to be of broad significance.

摘要

神经系统的功能完全依赖于单个神经元所形成的复杂而精确的连接模式。对这种连接模式形成机制的许多有见地的研究是在昆虫神经系统中进行的。发育机制的研究揭示了神经元与神经胶质细胞(神经系统中的非神经元细胞)之间的关键相互作用。神经胶质细胞为神经元提供营养支持,充当迁移神经元和生长轴突的支柱,形成限制神经突生长的边界,并与控制细胞命运指定和轴突路径寻找的神经元进行相互作用。这些相互作用背后的分子机制正开始被理解。由于神经发育背后的许多细胞和分子机制在不同的昆虫物种之间,甚至在昆虫和脊椎动物之间似乎都是共同的,因此对发育中的昆虫神经系统的研究正在阐明可能具有广泛意义的机制。

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