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神经发生:一个与脑腔及其内容物(CSF)在个体发生上相关的过程。

Neurogenesis: A process ontogenically linked to brain cavities and their content, CSF.

机构信息

Departamento De Anatomía Y Radiología, Facultad De Medicina, Universidad De Valladolid, C/ Ramón Y Cajal 7, 47005, Valladolid, Spain; Laboratorio de Desarrollo y Teratología del Sistema Nervioso. Instituto de Neurociencias de Castilla y León (INCYL). Universidad de Valladolid. Valladolid, Spain.

Departamento De Anatomía Y Radiología, Facultad De Medicina, Universidad De Valladolid, C/ Ramón Y Cajal 7, 47005, Valladolid, Spain; Laboratorio de Desarrollo y Teratología del Sistema Nervioso. Instituto de Neurociencias de Castilla y León (INCYL). Universidad de Valladolid. Valladolid, Spain.

出版信息

Semin Cell Dev Biol. 2020 Jun;102:21-27. doi: 10.1016/j.semcdb.2019.11.008. Epub 2019 Nov 27.

Abstract

Neurogenesis is the process underlying the development of the highly evolved central nervous system (CNS) in vertebrates. Neurogenesis takes place by differentiation of specific Neural Precursor Cells in the neurogenic niche. The main objective of this review is to highlight the specific relationship between the brain cavities, and neurogenesis from neural precursors. Brain cavities and their content, Cerebrospinal Fluid (CSF), establish a key relation with the neurogenic "niche" because of the presence in this fluid of neurogenic signals able to control neural precursor cell behaviour, inducing precursor proliferation and neuronal differentiation. This influence seems to be ontogenically preserved, despite the temporal and spatial variations that occur throughout life. In order to better understand this concept, we consider three main life periods in the CSF-Neurogenesis interaction: The "Embryonic" period, which take place at the Neural Tube stage and extends from the isolation of the neural tube at the end of "neurulation" to the beginning of Choroid Plexus activity; the "Fetal" period, which includes the remaining developmental and the early postnatal stages; and the "Adult" period, which continues for the rest of adult life. Each period has specific characteristics in respect of CSF synthesis and composition, and the location, extension and neurogenic activity of the neurogenic niche. However, CSF interaction with the neurogenic niche is a common factor, which should be taken into account to better understand the ontogeny of neuron formation and replacement, as well as its potential role in the success or failure of therapies for the ageing, injured or diseased brain.

摘要

神经发生是脊椎动物高度进化的中枢神经系统(CNS)发育的过程。神经发生通过神经发生龛中的特定神经前体细胞的分化来实现。本综述的主要目的是强调脑腔与神经前体细胞神经发生之间的特定关系。脑腔及其内容物,即脑脊液(CSF),与神经发生的“龛”建立了关键关系,因为在这种液体内存在能够控制神经前体细胞行为的神经发生信号,诱导前体细胞增殖和神经元分化。这种影响似乎在个体发生过程中得到了保留,尽管在整个生命周期中会发生时间和空间上的变化。为了更好地理解这一概念,我们考虑了 CSF-神经发生相互作用的三个主要生命阶段:“胚胎期”,发生在神经管阶段,从神经管的隔离开始,在“神经管闭合”结束时到脉络丛开始活动时结束;“胎儿期”,包括剩余的发育和早期产后阶段;以及“成年期”,持续到成年期的剩余时间。每个时期在 CSF 合成和组成以及神经发生龛的位置、延伸和神经发生活性方面都有其特定的特征。然而,CSF 与神经发生龛的相互作用是一个共同的因素,应该考虑到这一点,以更好地理解神经元形成和替代的个体发生,以及其在衰老、受伤或患病大脑的治疗成功或失败中的潜在作用。

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