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斑马鱼全视网膜破坏后的神经节细胞再生

Ganglion cell regeneration following whole-retina destruction in zebrafish.

作者信息

Sherpa Tshering, Fimbel Shane M, Mallory Dianne E, Maaswinkel Hans, Spritzer Scott D, Sand Jordan A, Li L, Hyde David R, Stenkamp Deborah L

机构信息

Department of Biological Sciences, University of Idaho, Moscow, ID, USA.

出版信息

Dev Neurobiol. 2008 Feb 1;68(2):166-81. doi: 10.1002/dneu.20568.

Abstract

The retinas of adult teleost fish can regenerate neurons following injury. The current study provides the first documentation of functional whole retina regeneration in the zebrafish, Danio rerio, following intraocular injection of the cytotoxin, ouabain. Loss and replacement of laminated retinal tissue was monitored by analysis of cell death and cell proliferation, and by analysis of retina-specific gene expression patterns. The spatiotemporal process of retinal ganglion cell (RGC) regeneration was followed through the use of selective markers, and was found to largely recapitulate the spatiotemporal process of embryonic ganglion cell neurogenesis, over a more protracted time frame. However, the re-expression of some ganglion cell markers was not observed. The growth and pathfinding of ganglion cell axons was evaluated by measurement of the optic nerve head (ONH), and the restoration of normal ONH size was found to correspond to the time of recovery of two visually-mediated behaviors. However, some abnormalities were noted, including overproduction of RGCs, and progressive and excessive growth of the ONH at longer recovery times. This model system for whole-retina regeneration has provided an informative view of the regenerative process.

摘要

成年硬骨鱼的视网膜在受伤后能够再生神经元。本研究首次记录了斑马鱼(Danio rerio)眼内注射细胞毒素哇巴因后功能性全视网膜再生的情况。通过分析细胞死亡和细胞增殖以及视网膜特异性基因表达模式,监测了分层视网膜组织的丢失和替换。利用选择性标记追踪视网膜神经节细胞(RGC)再生的时空过程,发现其在更长的时间范围内大致重现了胚胎神经节细胞神经发生的时空过程。然而,未观察到一些神经节细胞标记物的重新表达。通过测量视神经乳头(ONH)评估神经节细胞轴突的生长和路径寻找,发现正常ONH大小的恢复与两种视觉介导行为的恢复时间相对应。然而,也注意到一些异常情况,包括RGC过度产生,以及在较长恢复时间时ONH的渐进性和过度生长。这个全视网膜再生的模型系统为再生过程提供了丰富的信息。

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