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沙鼠耳蜗出生后发育过程中神经元程序性细胞死亡的时空模式。

Spatiotemporal patterns of neuronal programmed cell death during postnatal development of the gerbil cochlea.

作者信息

Echteler Stephen M, Magardino Thomas, Rontal Matthew

机构信息

Abramson Research Building, Room 510D, The Children's Hospital of Philadelphia, 34th St. and Civic Center Boulevard, Philadelphia, PA 19104-4318, USA.

出版信息

Brain Res Dev Brain Res. 2005 Jun 30;157(2):192-200. doi: 10.1016/j.devbrainres.2005.04.004.

Abstract

During early postnatal development, afferent neurons of the cochlear (spiral) ganglion progressively refine their projections to auditory hair cells so that, by hearing onset, most cochlear nerve fibers innervate a single hearing receptor. One mechanism that might contribute to these changes in cochlear innervation is the programmed cell death (apoptosis) of developing neurons within the spiral ganglion. In the present study, we used the TUNEL method and morphological criteria to identify apoptotic cells within the spiral ganglion of the Mongolian gerbil during the first week of postnatal life when afferent projections to the cochlea are actively refined in this species. The locations of individual apoptotic spiral ganglion cells were mapped onto three-dimensional reconstructions of the entire ganglion for an age-graded series of gerbils to produce the first high-resolution, spatiotemporal maps of apoptotic ganglion cell death for the postnatal cochlea. We observed a significant increase in apoptosis in the spiral ganglion from postnatal day (P) 4 through P6. During this time, the most intense apoptotic activity occurred in regions of the spiral ganglion providing innervation to the lower middle and apical turns of the cochlea. The time course and regional variation of programmed cell death within the developing gerbil spiral ganglion are discussed in terms of the postnatal refinement of cochlear innervation and its possible functional significance for hearing in gerbils.

摘要

在出生后的早期发育阶段,耳蜗(螺旋)神经节的传入神经元逐渐优化其向听觉毛细胞的投射,以便在听力开始时,大多数耳蜗神经纤维支配单个听觉感受器。螺旋神经节内发育中的神经元的程序性细胞死亡(凋亡)可能是导致耳蜗神经支配这些变化的一种机制。在本研究中,我们使用TUNEL法和形态学标准来识别出生后第一周蒙古沙鼠螺旋神经节内的凋亡细胞,在此期间该物种向耳蜗的传入投射正在积极优化。将单个凋亡螺旋神经节细胞的位置映射到一系列不同年龄沙鼠整个神经节的三维重建上,以生成出生后耳蜗凋亡神经节细胞死亡的首张高分辨率时空图谱。我们观察到从出生后第(P)4天到P6天,螺旋神经节中的凋亡显著增加。在此期间,最强烈的凋亡活动发生在为耳蜗中下转和顶转提供神经支配的螺旋神经节区域。根据出生后耳蜗神经支配的优化及其对沙鼠听力可能的功能意义,讨论了发育中的沙鼠螺旋神经节内程序性细胞死亡的时间进程和区域变化。

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