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超越海马体和室管膜下区:全脑的成年神经发生

Beyond the Hippocampus and the SVZ: Adult Neurogenesis Throughout the Brain.

作者信息

Jurkowski Michal P, Bettio Luis, K Woo Emma, Patten Anna, Yau Suk-Yu, Gil-Mohapel Joana

机构信息

Island Medical Program, University of British Columbia, Vancouver, BC, Canada.

Division of Medical Sciences, University of Victoria, Victoria, BC, Canada.

出版信息

Front Cell Neurosci. 2020 Sep 29;14:576444. doi: 10.3389/fncel.2020.576444. eCollection 2020.

Abstract

Convincing evidence has repeatedly shown that new neurons are produced in the mammalian brain into adulthood. Adult neurogenesis has been best described in the hippocampus and the subventricular zone (SVZ), in which a series of distinct stages of neuronal development has been well characterized. However, more recently, new neurons have also been found in other brain regions of the adult mammalian brain, including the hypothalamus, striatum, substantia nigra, cortex, and amygdala. While some studies have suggested that these new neurons originate from endogenous stem cell pools located within these brain regions, others have shown the migration of neurons from the SVZ to these regions. Notably, it has been shown that the generation of new neurons in these brain regions is impacted by neurologic processes such as stroke/ischemia and neurodegenerative disorders. Furthermore, numerous factors such as neurotrophic support, pharmacologic interventions, environmental exposures, and stem cell therapy can modulate this endogenous process. While the presence and significance of adult neurogenesis in the human brain (and particularly outside of the classical neurogenic regions) is still an area of debate, this intrinsic neurogenic potential and its possible regulation through therapeutic measures present an exciting alternative for the treatment of several neurologic conditions. This review summarizes evidence in support of the classic and novel neurogenic zones present within the mammalian brain and discusses the functional significance of these new neurons as well as the factors that regulate their production. Finally, it also discusses the potential clinical applications of promoting neurogenesis outside of the classical neurogenic niches, particularly in the hypothalamus, cortex, striatum, substantia nigra, and amygdala.

摘要

确凿的证据反复表明,哺乳动物大脑在成年后仍会产生新的神经元。成年神经发生现象在海马体和脑室下区(SVZ)中得到了最为充分的描述,在这些区域,神经元发育的一系列不同阶段已得到很好的界定。然而,最近在成年哺乳动物大脑的其他区域也发现了新的神经元,包括下丘脑、纹状体、黑质、皮层和杏仁核。虽然一些研究表明这些新神经元源自位于这些脑区的内源性干细胞池,但其他研究则显示神经元会从SVZ迁移到这些区域。值得注意的是,已经表明这些脑区中新神经元的产生会受到中风/缺血和神经退行性疾病等神经过程的影响。此外,神经营养支持、药物干预、环境暴露和干细胞治疗等众多因素可以调节这一内源性过程。虽然成年神经发生在人类大脑中的存在及其意义(特别是在经典神经发生区域之外)仍是一个有争议的领域,但这种内在的神经发生潜力及其通过治疗措施的可能调节为治疗几种神经疾病提供了令人兴奋的替代方案。这篇综述总结了支持哺乳动物大脑中存在的经典和新神经发生区域的证据,并讨论了这些新神经元的功能意义以及调节它们产生的因素。最后,它还讨论了在经典神经发生微环境之外促进神经发生的潜在临床应用,特别是在下丘脑、皮层、纹状体、黑质和杏仁核中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1942/7550688/e5e410517792/fncel-14-576444-g0001.jpg

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