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金鱼视顶盖中位置标记稳定性的证据。

Evidence for the stability of positional markers in the goldfish tectum.

作者信息

Busse U, Stuermer C A

机构信息

Friedrich-Miescher-Laboratorium Max-Planck-Gesellschaft, Tübingen, Federal Republic of Germany.

出版信息

J Comp Neurol. 1989 Oct 22;288(4):538-54. doi: 10.1002/cne.902880403.

Abstract

Positional markers in the tectum, which are thought to guide growing axons to their target sites, have been proposed to be induced by axons, to be only transiently associated with the tectal cells, and then lost after long-term denervation periods (Schmidt: J. Comp. Neurol. 177:279-300, '78). To further investigate this concept, retinal axons were induced to regenerate into ipsilateral tecta which had been deprived of their retinal afferents for shorter (0-4 months) and longer periods (4-8 months). The paths of HRP-labeled regenerating axons of known retinal origin were traced and used as an operational test to decide whether the axons might navigate under the influence of positional markers. Two different kinds of experiments were performed: 1. The axons from a subpopulation of all ganglion cells in the retina were labeled by applying a small crystal of HRP at defined retinal regions. Independent of the denervation period of the tectum, the labeled regenerating axons traveled in abnormal but nonrandom routes. In early regeneration stages, axons exhibited signs of exploratory growth. They extended branches equipped with growth cones and filopodia into various regions of the tectum. In late regeneration stages, the axons lost these branches, exhibited U-turns and bends, and ended in terminal arbors in the retinotopic target region. These findings suggest that the axons travel under the influence of tectal positional markers and that these markers are not transient. 2. Axons from a surgically created temporal hemiretina were labeled by application of HRP to the optic nerve to test whether the temporal axons might expand into the caudal tectum in long-term-denervated tecta. The HRP-labeled axons coursed over rostral and midtectal regions. Instead of invading the caudal tectum they bent and terminated in the rostral tectal half. These results add further support for the conclusion that the path of regenerating retinal axons is governed by long-lasting positional markers.

摘要

中脑顶盖中的位置标记物被认为可引导生长中的轴突到达其靶位点,有人提出这些标记物是由轴突诱导产生的,仅与顶盖细胞短暂相关,然后在长期去神经支配后消失(施密特:《比较神经学杂志》177:279 - 300,1978年)。为了进一步研究这一概念,诱导视网膜轴突再生进入同侧顶盖,这些顶盖分别被剥夺视网膜传入神经较短时间(0 - 4个月)和较长时间(4 - 8个月)。追踪已知视网膜起源的HRP标记的再生轴突的路径,并将其用作一项操作性测试,以确定轴突是否可能在位置标记物的影响下导航。进行了两种不同类型的实验:1. 通过在视网膜特定区域放置一小颗HRP晶体,标记视网膜中所有神经节细胞亚群的轴突。与顶盖的去神经支配时间无关,标记的再生轴突以异常但非随机的路径行进。在再生早期阶段,轴突表现出探索性生长的迹象。它们伸出配备有生长锥和丝状伪足的分支,进入顶盖的各个区域。在再生后期阶段,轴突失去这些分支,出现掉头和弯曲,并在视网膜拓扑靶区域形成终末分支。这些发现表明轴突在顶盖位置标记物的影响下行进,并且这些标记物不是短暂的。2. 通过将HRP应用于视神经,标记手术创建的颞侧半视网膜的轴突,以测试颞侧轴突是否可能在长期去神经支配的顶盖中扩展到尾侧顶盖。HRP标记的轴突穿过嘴侧和顶盖中部区域。它们没有侵入尾侧顶盖,而是弯曲并终止于顶盖嘴侧半。这些结果进一步支持了再生视网膜轴突的路径由持久的位置标记物控制这一结论。

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