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从鸡眼睫状缘获得的神经球具有位置值,并且由它们分化而来的视网膜神经节细胞对EphA/ephrin-A系统有反应。

Neurospheres obtained from the ciliary margin of the chicken eye possess positional values and retinal ganglion cells differentiated from them respond to EphA/ephrin-A system.

作者信息

Fiore Luciano, Olmos-Carreño Cindy Lorena, Medori Mara, Spelzini Gonzalo, Sanchez Viviana, Scicolone Gabriel

机构信息

CONICET - Universidad de Buenos Aires, Instituto de Biología Celular y Neurociencias "Prof. E. De Robertis" (IBCN), Ciudad Autónoma de Buenos Aires, Argentina; Universidad de Buenos Aires, Facultad de Medicina, Departamento de Biología Celular, Histología, Embriología y Genética, Ciudad Autónoma de Buenos Aires, Argentina.

CONICET - Universidad de Buenos Aires, Instituto de Biología Celular y Neurociencias "Prof. E. De Robertis" (IBCN), Ciudad Autónoma de Buenos Aires, Argentina; Universidad de Buenos Aires, Facultad de Medicina, Departamento de Biología Celular, Histología, Embriología y Genética, Ciudad Autónoma de Buenos Aires, Argentina.

出版信息

Exp Eye Res. 2022 Apr;217:108965. doi: 10.1016/j.exer.2022.108965. Epub 2022 Jan 29.

DOI:10.1016/j.exer.2022.108965
PMID:35101412
Abstract

In the Central Nervous System (CNS) there are some niches of undifferentiated, neural progenitor/stem cells that produce active neurogenesis originating functionally integrated neurons. In the chicken eye, there is a neurogenic niche in the ciliary margin (CM) which has the ability to originate all the cell types of the neural retina. During retinal development, cells acquire positional values along the radial and tangential axes. These positional values are the necessary base for the formation of neural circuits. In this work, we have analyzed whether neural progenitor cells (NPCs) of CM have positional values regarding the radial and tangential axes, and if they have the potential to differentiate into retinal ganglion cells (RGCs) in vitro. Furthermore, we analyzed whether these RGCs preserve positional values along the tangential axis and respond to the Eph/ephrin axon guidance system. In order to answer these questions, we cultured NPCs obtained from the CM favoring the formation of neurospheres. Our results showed that the expanding neurospheres are polarized structures in which their cells have specific positional values along their radial axis, recapitulating the apical-basal polarity of the CM and the neuroepithelium. We also showed that NPCs obtained from CM possess positional values along the nasal-temporal retinal axis. When the neurospheres were submitted to differentiation conditions, we observed that NPCs can differentiate into RGCs. These RGCs present long axons that express different members of the Eph/ephrin system and they are competent to respond to this axon guidance cue system, recapitulating the axonal behavior during retinotectal neural map development. All these findings contribute to understand the cellular and molecular mechanisms involved in CNS development and regeneration.

摘要

在中枢神经系统(CNS)中,存在一些未分化的神经祖细胞/干细胞龛,这些龛产生活跃的神经发生,形成功能整合的神经元。在鸡眼中,睫状体边缘(CM)存在一个神经发生龛,它有能力产生神经视网膜的所有细胞类型。在视网膜发育过程中,细胞沿径向和切向轴获得位置值。这些位置值是神经回路形成的必要基础。在这项工作中,我们分析了CM的神经祖细胞(NPC)是否具有关于径向和切向轴的位置值,以及它们在体外是否有分化为视网膜神经节细胞(RGC)的潜力。此外,我们分析了这些RGC是否沿切向轴保留位置值并对Eph/ephrin轴突导向系统作出反应。为了回答这些问题,我们培养了从CM获得的有利于神经球形成的NPC。我们的结果表明,不断扩大的神经球是极化结构,其中的细胞沿其径向轴具有特定的位置值,概括了CM和神经上皮的顶-基极性。我们还表明,从CM获得的NPC沿鼻-颞视网膜轴具有位置值。当神经球处于分化条件时,我们观察到NPC可以分化为RGC。这些RGC呈现出长轴突,表达Eph/ephrin系统的不同成员,并且它们能够对这种轴突导向线索系统作出反应,概括了视网膜-顶盖神经图谱发育过程中的轴突行为。所有这些发现都有助于理解中枢神经系统发育和再生所涉及的细胞和分子机制。

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