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脑源性神经营养因子表达模式的变化与大鼠和小鼠耳蜗发育过程中纤维的重排相关。

A changing pattern of brain-derived neurotrophic factor expression correlates with the rearrangement of fibers during cochlear development of rats and mice.

作者信息

Wiechers B, Gestwa G, Mack A, Carroll P, Zenner H P, Knipper M

机构信息

Department of Oto-Rhino-Laryngology, University of Tübingen, D-72076 Tübingen, Germany.

出版信息

J Neurosci. 1999 Apr 15;19(8):3033-42. doi: 10.1523/JNEUROSCI.19-08-03033.1999.

Abstract

The reorganization of specific neuronal connections is a typical feature of the developing nervous system. It is assumed that the refinement of connections in sensory systems requires spontaneous activity before the onset of cochlear function and selective sensory experience during the ensuing period. The mechanism of refinement through sensory experience is currently postulated as being based on the selective reinforcement of active projections by neurotrophins. We studied a presumed role of neurotrophins for rearrangement of afferent and efferent fibers before the onset of sensory function in the precisely innervated auditory end organ, the cochlea. We observed a spatiotemporal change in the localization of brain-derived neurotrophic factor (BDNF) protein and mRNA, which correlated with the reorganization of fibers. Thus, BDNF decreased in target hair cells during fiber retraction and was subsequently upregulated in neurons, target hair cells, and adjacent supporting cells concomitant with the formation of new synaptic contacts. Analysis of the innervation pattern in BDNF gene-deleted mice by immunohistochemistry and confocal microscopy revealed a failure in the rearrangement of fibers and a BDNF dependency of distinct neuronal projections that reorganize in control animals. Our data suggest that, before the onset of auditory function, a spatiotemporal change in BDNF expression in sensory, epithelial, and neuronal cells may guide the initial steps of refinement of the innervation pattern.

摘要

特定神经元连接的重组是发育中神经系统的一个典型特征。据推测,感觉系统中连接的精细化需要在耳蜗功能开始之前的自发活动以及随后时期的选择性感觉经验。目前假定通过感觉经验实现精细化的机制是基于神经营养因子对活跃投射的选择性强化。我们研究了神经营养因子在精确支配的听觉终器——耳蜗的感觉功能开始之前对传入和传出纤维重排的假定作用。我们观察到脑源性神经营养因子(BDNF)蛋白和mRNA定位的时空变化,这与纤维的重组相关。因此,在纤维回缩期间,靶毛细胞中的BDNF减少,随后在神经元、靶毛细胞和相邻支持细胞中上调,同时形成新的突触联系。通过免疫组织化学和共聚焦显微镜对BDNF基因缺失小鼠的神经支配模式进行分析,结果显示纤维重排失败以及对照动物中发生重组的不同神经元投射对BDNF的依赖性。我们的数据表明,在听觉功能开始之前,感觉、上皮和神经元细胞中BDNF表达的时空变化可能指导神经支配模式精细化的初始步骤。

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