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成人人类脑室下区:脑脊液的部分室管膜覆盖及增殖能力

The adult human subventricular zone: partial ependymal coverage and proliferative capacity of cerebrospinal fluid.

作者信息

de Sonnaville Sophia F A M, van Strien Miriam E, Middeldorp Jinte, Sluijs Jacqueline A, van den Berge Simone A, Moeton Martina, Donega Vanessa, van Berkel Annemiek, Deering Tasmin, De Filippis Lidia, Vescovi Angelo L, Aronica Eleonora, Glass Rainer, van de Berg Wilma D J, Swaab Dick F, Robe Pierre A, Hol Elly M

机构信息

Department of Translational Neuroscience, UMC Utrecht Brain Centre, University Medical Centre Utrecht, University Utrecht, Utrecht, The Netherlands.

Department of Neuroimmunology, Netherlands Institute for Neuroscience, An Institute of the Royal Netherlands Academy of Arts and Sciences, Amsterdam, The Netherlands.

出版信息

Brain Commun. 2020 Oct 13;2(2):fcaa150. doi: 10.1093/braincomms/fcaa150. eCollection 2020.

Abstract

Neurogenesis continues throughout adulthood in specialized regions of the brain. One of these regions is the subventricular zone. During brain development, neurogenesis is regulated by a complex interplay of intrinsic and extrinsic cues that control stem-cell survival, renewal and cell lineage specification. Cerebrospinal fluid (CSF) is an integral part of the neurogenic niche in development as it is in direct contact with radial glial cells, and it is important in regulating proliferation and migration. Yet, the effect of CSF on neural stem cells in the subventricular zone of the adult human brain is unknown. We hypothesized a persistent stimulating effect of ventricular CSF on neural stem cells in adulthood, based on the literature, describing bulging accumulations of subventricular cells where CSF is in direct contact with the subventricular zone. Here, we show by immunohistochemistry on adult human subventricular zone sections that neural stem cells are in close contact with CSF via protrusions through both intact and incomplete ependymal layers. We are the first to systematically quantify subventricular glial nodules denuded of ependyma and consisting of proliferating neural stem and progenitor cells, and showed that they are present from foetal age until adulthood. Neurosphere, cell motility and differentiation assays as well as analyses of RNA expression were used to assess the effects of CSF of adult humans on primary neural stem cells and a human immortalized neural stem cell line. We show that human ventricular CSF increases proliferation and decreases motility of neural stem cells. Our results also indicate that adult CSF pushes neural stem cells from a relative quiescent to a more active state and promotes neuronal over astrocytic lineage differentiation. Thus, CSF continues to stimulate neural stem cells throughout aging.

摘要

神经发生在成年期会在大脑的特定区域持续进行。其中一个区域是脑室下区。在大脑发育过程中,神经发生受内在和外在信号复杂的相互作用调节,这些信号控制着干细胞的存活、更新以及细胞谱系的特化。脑脊液(CSF)是发育过程中神经发生微环境的一个组成部分,因为它与放射状胶质细胞直接接触,并且在调节增殖和迁移方面很重要。然而,脑脊液对成人大脑脑室下区神经干细胞的影响尚不清楚。基于文献中描述的脑室下细胞在脑脊液与脑室下区直接接触处的凸起积聚,我们推测成年期脑室脑脊液对神经干细胞具有持续的刺激作用。在此,我们通过对成人脑室下区切片进行免疫组织化学分析表明,神经干细胞通过穿过完整和不完整室管膜层的突起与脑脊液紧密接触。我们首次系统地量化了剥除室管膜、由增殖的神经干细胞和祖细胞组成的脑室下胶质结节,并表明它们从胎儿期到成年期都存在。我们使用神经球、细胞运动性和分化测定以及RNA表达分析来评估成人脑脊液对原代神经干细胞和一种人永生化神经干细胞系的影响。我们发现人脑室脑脊液可增加神经干细胞的增殖并降低其运动性。我们的结果还表明,成年脑脊液将神经干细胞从相对静止状态推向更活跃的状态,并促进神经元而非星形胶质细胞谱系的分化。因此,脑脊液在整个衰老过程中持续刺激神经干细胞。

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