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视网膜神经节细胞轴突布线:建立双眼回路

Retinal Ganglion Cell Axon Wiring Establishing the Binocular Circuit.

作者信息

Mason Carol, Slavi Nefeli

机构信息

Department of Pathology and Cell Biology, Columbia University, New York, NY 10027, USA; email:

Department of Neuroscience, Columbia University, New York, NY 10027, USA.

出版信息

Annu Rev Vis Sci. 2020 Sep 15;6:215-236. doi: 10.1146/annurev-vision-091517-034306. Epub 2020 May 12.

Abstract

Binocular vision depends on retinal ganglion cell (RGC) axon projection either to the same side or to the opposite side of the brain. In this article, we review the molecular mechanisms for decussation of RGC axons, with a focus on axon guidance signaling at the optic chiasm and ipsi- and contralateral axon organization in the optic tract prior to and during targeting. The spatial and temporal features of RGC neurogenesis that give rise to ipsilateral and contralateral identity are described. The albino visual system is highlighted as an apt comparative model for understanding RGC decussation, as albinos have a reduced ipsilateral projection and altered RGC neurogenesis associated with perturbed melanogenesis in the retinal pigment epithelium. Understanding the steps for RGC specification into ipsi- and contralateral subtypes will facilitate differentiation of stem cells into RGCs with proper navigational abilities for effective axon regeneration and correct targeting of higher-order visual centers.

摘要

双眼视觉取决于视网膜神经节细胞(RGC)轴突投射到脑的同侧或对侧。在本文中,我们回顾了RGC轴突交叉的分子机制,重点关注视交叉处的轴突导向信号以及靶向之前和期间视束中同侧和对侧轴突的组织。描述了产生同侧和对侧特性的RGC神经发生的时空特征。白化病视觉系统被视为理解RGC交叉的合适比较模型,因为白化病患者同侧投射减少,且RGC神经发生改变,这与视网膜色素上皮中黑色素生成紊乱有关。了解RGC分化为同侧和对侧亚型的步骤将有助于将干细胞分化为具有适当导航能力的RGC,以实现有效的轴突再生和正确靶向高阶视觉中枢。

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