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硫酸软骨素蛋白聚糖在小鼠胚胎视交叉中的表达。

Expression of chondroitin sulfate proteoglycans in the chiasm of mouse embryos.

作者信息

Chung K Y, Shum D K, Chan S O

机构信息

Department of Anatomy, Chinese University of Hong Kong, People's Republic of China.

出版信息

J Comp Neurol. 2000 Feb 7;417(2):153-63. doi: 10.1002/(sici)1096-9861(20000207)417:2<153::aid-cne2>3.0.co;2-d.

DOI:10.1002/(sici)1096-9861(20000207)417:2<153::aid-cne2>3.0.co;2-d
PMID:10660894
Abstract

Chondroitin sulfate (CS) proteoglycans have been implicated as molecules that are involved in axon guidance in the developing neural pathways. The spatiotemporal expression of CS was investigated in the developing retinofugal pathway in mouse embryos by using the CS-56 antibody. Immunoreactive CS was detected in inner regions of the retina as early as embryonic day 11 (E11). Its expression in subsequent stages of development followed a centrifugal, receding gradient that appeared to correlate with the sequence of axogenesis in the retina. In the chiasm, immunoreactive CS was expressed at E12, before the arrival of retinal axons. When the retinal axons navigated in the chiasm at E13-E14, immunoreactive CS remained at a low level in the optic fiber layer of the chiasm but was observed prominently in the caudal parts of the ventral diencephalon. This pattern followed closely the array of stage-specific-embryonic-antigen-1-positive neurons in the ventral diencephalon, with a V-shaped configuration that bordered the posterior boundary of the retinal axons, and a rostral raphe extension that ran across the decussating axons in the chiasm. Thus, the CS epitope is implicated in patterning the course of early retinal axons and in regulating axon divergence in the chiasm. At the lateral region of the chiasm, where the retinal axons cross the midline and approach the optic tract, a CS-immunopositive region coincided with the region in which active sorting of dorsal retinal axons from ventral retinal axons occurs. Moreover, at the threshold of the optic tract, the immunoreactive CS was restricted only to the deep part of the optic fiber layer, suggesting an inhibitory role of the CS epitope in repelling newly arrived axons to superficial regions of the optic tract during the development of chronotopic order at this part of the retinofugal pathway.

摘要

硫酸软骨素(CS)蛋白聚糖被认为是参与发育中的神经通路轴突导向的分子。通过使用CS - 56抗体,研究了小鼠胚胎发育中的视网膜神经通路中CS的时空表达。早在胚胎第11天(E11),就在视网膜内部区域检测到免疫反应性CS。其在发育后续阶段的表达呈现出离心式的递减梯度,这似乎与视网膜中轴突发生的顺序相关。在视交叉中,免疫反应性CS在E12表达,早于视网膜轴突的到达。当视网膜轴突在E13 - E14在视交叉中导航时,免疫反应性CS在视交叉的视神经纤维层中保持低水平,但在腹侧间脑的尾部显著观察到。这种模式紧密跟随腹侧间脑中阶段特异性胚胎抗原-1阳性神经元的排列,呈V形构型,与视网膜轴突的后边界接壤,并有一个穿过视交叉中交叉轴突的 Rostral 缝延伸。因此,CS表位与早期视网膜轴突的路径形成以及视交叉中轴突发散的调节有关。在视交叉的外侧区域,视网膜轴突穿过中线并接近视束,一个CS免疫阳性区域与背侧视网膜轴突与腹侧视网膜轴突进行主动分选的区域重合。此外,在视束的阈值处,免疫反应性CS仅局限于视神经纤维层的深部,这表明在视网膜神经通路这一部分的时间顺序发育过程中,CS表位在排斥新到达的轴突到视束浅表区域方面具有抑制作用。

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