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从发育中的新皮层中的干细胞和祖细胞到神经元:灵长类动物之间的关键差异。

From stem and progenitor cells to neurons in the developing neocortex: key differences among hominids.

作者信息

Mora-Bermúdez Felipe, Taverna Elena, Huttner Wieland B

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, Germany.

Max Planck Institute for Evolutionary Anthropology, Leipzig, Germany.

出版信息

FEBS J. 2022 Mar;289(6):1524-1535. doi: 10.1111/febs.15793. Epub 2021 Mar 19.

Abstract

Comparing the biology of humans to that of other primates, and notably other hominids, is a useful path to learn more about what makes us human. Some of the most interesting differences among hominids are closely related to brain development and function, for example behaviour and cognition. This makes it particularly interesting to compare the hominid neural cells of the neocortex, a part of the brain that plays central roles in those processes. However, well-preserved tissue from great apes is usually extremely difficult to obtain. A variety of new alternative tools, for example brain organoids, are now beginning to make it possible to search for such differences and analyse their potential biological and biomedical meaning. Here, we present an overview of recent findings from comparisons of the neural stem and progenitor cells (NSPCs) and neurons of hominids. In addition to differences in proliferation and differentiation of NSPCs, and maturation of neurons, we highlight that the regulation of the timing of these processes is emerging as a general foundational difference in the development of the neocortex of hominids.

摘要

将人类生物学与其他灵长类动物,尤其是其他原始人类的生物学进行比较,是深入了解人类独特之处的有效途径。原始人类之间一些最有趣的差异与大脑发育和功能密切相关,例如行为和认知。这使得比较新皮层的原始人类神经细胞变得格外有趣,新皮层是大脑中在这些过程中起核心作用的部分。然而,通常极难获得保存完好的大猩猩组织。现在,各种新的替代工具,如脑类器官,开始使寻找此类差异并分析其潜在的生物学和生物医学意义成为可能。在此,我们概述了原始人类神经干细胞和祖细胞(NSPCs)与神经元比较的最新研究结果。除了NSPCs增殖和分化以及神经元成熟方面的差异外,我们还强调,这些过程时间调控的差异正逐渐成为原始人类新皮层发育中的一个普遍的基础差异。

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