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听觉发育中的轴突导向因子

Axon guidance cues in auditory development.

作者信息

Webber Audra, Raz Yael

机构信息

Department of Otolaryngology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, USA.

出版信息

Anat Rec A Discov Mol Cell Evol Biol. 2006 Apr;288(4):390-6. doi: 10.1002/ar.a.20299.

Abstract

The innervation of the cochlear sensory epithelium is intricately organized, allowing the tonotopy established by the auditory hair cells to be maintained along the ascending auditory pathways. These auditory projections are patterned by several gene families that regulate neurite attraction and repulsion, known as axon guidance cues. In this review, the roles of various axon guidance molecules, including fibroblast growth factor, ephs, semaphorins, netrins and slits, are examined in light of their known contribution to auditory development. Additionally, morphogens are discussed in the context of their recently described influence on axonal pathfinding in other sensory systems. The elucidation of these various mechanisms may guide the development of therapies aimed at maximizing the connectivity of auditory neurons in the context of congenital or acquired sensorineural hearing loss, especially as pertains to cochlear implants. Further afield, improved understanding of the molecular processes which regulate innervation of the organ of Corti during normal development may prove useful in connecting regenerated hair cells to the central nervous system.

摘要

耳蜗感觉上皮的神经支配是错综复杂地组织起来的,使得听觉毛细胞建立的音调定位能够沿着上行听觉通路得以维持。这些听觉投射由几个调节神经突吸引和排斥的基因家族形成模式,这些基因家族被称为轴突导向线索。在这篇综述中,根据各种轴突导向分子,包括成纤维细胞生长因子、Eph家族、信号素、网蛋白和缝隙蛋白,对听觉发育的已知贡献,来研究它们的作用。此外,还在形态发生素最近被描述的对其他感觉系统中轴突寻路的影响的背景下对其进行了讨论。阐明这些各种机制可能会指导旨在在先天性或获得性感音神经性听力损失的情况下最大化听觉神经元连接性的治疗方法的开发,特别是与人工耳蜗相关的情况。在更广泛的领域,更好地理解在正常发育过程中调节柯蒂氏器神经支配的分子过程可能有助于将再生的毛细胞与中枢神经系统连接起来。

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