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首页> 外文期刊>Brain research >Pax2+ astrocytes in the fish optic nerve head after optic nerve crush
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Pax2+ astrocytes in the fish optic nerve head after optic nerve crush

机译:视神经挤压后鱼视神经头部中的Pax2 +星形胶质细胞

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The transcription factor Pax2 actively participates in the development of the vertebrate visual system. In adults, Pax2 expression persists in a subpopulation of Müller cells and/or astrocytes in the retina and optic nerve head (ONH), although its function remains elusive. In a previous work we showed that the pax2 gene expression is modified and the Pax2+ astrocyte population in the ONH strongly reacted during the regeneration of the retina after a lesion in goldfish. In the present work we have analyzed Pax2 expression in the goldfish ONH after optic nerve (ON) crush. At one week post-injury, when the regenerating axons arrive at the ONH, the pax2 gene expression level increases as well as the number of Pax2+ astrocytes in this region. These Pax2+ astrocytes show a higher number of Cytokeratin (Ck)+/GFAP+ processes compared with control animals. In contrast, a different S100+ astrocyte population is not modified and persists similar to that of controls. Furthermore, we find a ring that surrounds the posterior ONH that is formed by highly reactive astrocytes, positive to Pax2, GFAP, Ck, S100, GS and ZO1. In this region we also find a source of new astrocytes Pax2+/PCNA+ that is activated after the injury. We conclude that Pax2+ astrocytes constitute a subpopulation of ONH astrocytes that strongly reacts after ON crush and supports our previous results obtained after retina regeneration. Altogether, this suggests that pax2 gene expression and Pax2+ astrocytes are probably directly involved in the process of axonal regeneration.
机译:转录因子Pax2积极参与脊椎动物视觉系统的发育。在成年人中,Pax2表达在视网膜和视神经头(ONH)的Müller细胞和/或星形胶质细胞亚群中持续存在,尽管其功能仍然难以捉摸。在先前的工作中,我们显示了金鱼病变后视网膜再生期间,pax2基因的表达被修饰,ONH中的Pax2 +星形胶质细胞群强烈反应。在目前的工作中,我们分析了视神经(ON)挤压后金鱼ONH中Pax2的表达。损伤后一周,当再生轴突到达ONH时,该区域中pax2基因表达水平以及Pax2 +星形胶质细胞的数量增加。与对照动物相比,这些Pax2 +星形胶质细胞显示出更多的细胞角蛋白(Ck)+ / GFAP +过程。相比之下,不同的S100 +星形胶质细胞群体未得到修饰,并且与对照组相似。此外,我们发现了一个环,该环围绕由高反应性星形胶质细胞(对Pax2,GFAP,Ck,S100,GS和ZO1呈阳性)形成的后ONH。在该区域,我们还发现了在损伤后被激活的新星形胶质细胞Pax2 + / PCNA +的来源。我们得出的结论是,Pax2 +星形胶质细胞构成ONH星形胶质细胞的一个亚群,在ON挤压后强烈反应,并支持我们先前在视网膜再生后获得的结果。总之,这表明pax2基因表达和Pax2 +星形胶质细胞可能直接参与轴突再生的过程。

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