Neural stem cells and neuro/gliogenesis in the central nervous system: understanding the structural and functional plasticity of the developing, mature, and diseased brain.

The Journal of Physiological Sciences Pub Date : 2016-05-01 Epub Date: 2015-11-17 DOI:10.1007/s12576-015-0421-4
Masahiro Yamaguchi, Tatsunori Seki, Itaru Imayoshi, Nobuaki Tamamaki, Yoshitaka Hayashi, Yoshitaka Tatebayashi, Seiji Hitoshi
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Abstract

Neurons and glia in the central nervous system (CNS) originate from neural stem cells (NSCs). Knowledge of the mechanisms of neuro/gliogenesis from NSCs is fundamental to our understanding of how complex brain architecture and function develop. NSCs are present not only in the developing brain but also in the mature brain in adults. Adult neurogenesis likely provides remarkable plasticity to the mature brain. In addition, recent progress in basic research in mental disorders suggests an etiological link with impaired neuro/gliogenesis in particular brain regions. Here, we review the recent progress and discuss future directions in stem cell and neuro/gliogenesis biology by introducing several topics presented at a joint meeting of the Japanese Association of Anatomists and the Physiological Society of Japan in 2015. Collectively, these topics indicated that neuro/gliogenesis from NSCs is a common event occurring in many brain regions at various ages in animals. Given that significant structural and functional changes in cells and neural networks are accompanied by neuro/gliogenesis from NSCs and the integration of newly generated cells into the network, stem cell and neuro/gliogenesis biology provides a good platform from which to develop an integrated understanding of the structural and functional plasticity that underlies the development of the CNS, its remodeling in adulthood, and the recovery from diseases that affect it.

中枢神经系统中的神经干细胞和神经/胶质瘤发生:了解发育中的、成熟的和患病的大脑的结构和功能可塑性。
中枢神经系统(CNS)中的神经元和神经胶质来源于神经干细胞(NSCs)。了解NSCs的神经/胶质瘤形成机制是我们理解复杂大脑结构和功能发展的基础。NSCs不仅存在于发育中的大脑中,也存在于成人成熟的大脑中。成人神经发生可能为成熟的大脑提供了显著的可塑性。此外,精神障碍基础研究的最新进展表明,精神障碍与大脑特定区域的神经/胶质生成受损存在病因学联系。在这里,我们通过介绍2015年日本解剖学家协会和日本生理学会联合会议上提出的几个主题,回顾了干细胞和神经/胶质发生生物学的最新进展,并讨论了未来的方向。总的来说,这些主题表明NSCs的神经/胶质瘤形成是发生在动物不同年龄的许多大脑区域的常见事件。鉴于细胞和神经网络的重大结构和功能变化伴随着NSCs的神经/胶质形成以及新生成的细胞整合到网络中,干细胞和神经/胶质形成生物学提供了一个很好的平台,从中可以综合理解中枢神经系统发育、成年期重塑以及影响中枢神经系统的疾病恢复背后的结构和功能可塑性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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