Evaluation of advances in cortical development using model systems

IF 2.7 4区 医学 Q2 DEVELOPMENTAL BIOLOGY
Patricia R. Nano, Aparna Bhaduri
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引用次数: 1

Abstract

Compared with that of even the closest primates, the human cortex displays a high degree of specialization and expansion that largely emerges developmentally. Although decades of research in the mouse and other model systems has revealed core tenets of cortical development that are well preserved across mammalian species, small deviations in transcription factor expression, novel cell types in primates and/or humans, and unique cortical architecture distinguish the human cortex. Importantly, many of the genes and signaling pathways thought to drive human-specific cortical expansion also leave the brain vulnerable to disease, as the misregulation of these factors is highly correlated with neurodevelopmental and neuropsychiatric disorders. However, creating a comprehensive understanding of human-specific cognition and disease remains challenging. Here, we review key stages of cortical development and highlight known or possible differences between model systems and the developing human brain. By identifying the developmental trajectories that may facilitate uniquely human traits, we highlight open questions in need of approaches to examine these processes in a human context and reveal translatable insights into human developmental disorders.

用模型系统评价皮层发育的进展
即使与最接近的灵长类动物相比,人类的皮质也显示出高度的特化和扩展,这在很大程度上是在发育过程中出现的。尽管几十年来对小鼠和其他模型系统的研究已经揭示了皮层发育的核心原则,这些原则在哺乳动物物种中得到了很好的保存,但转录因子表达的小偏差、灵长类动物和/或人类的新细胞类型以及人类皮层独特的结构使人类皮层与众不同。重要的是,许多被认为驱动人类特异性皮层扩张的基因和信号通路也使大脑容易受到疾病的影响,因为这些因素的错误调节与神经发育和神经精神疾病高度相关。然而,全面了解人类特有的认知和疾病仍然具有挑战性。在这里,我们回顾了皮层发育的关键阶段,并强调了模型系统与发育中的人类大脑之间已知或可能的差异。通过确定可能促进独特人类特征的发展轨迹,我们强调了需要在人类背景下研究这些过程的方法的开放性问题,并揭示了对人类发育障碍的可翻译见解。
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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来源期刊
Developmental Neurobiology
Developmental Neurobiology 生物-发育生物学
CiteScore
6.50
自引率
0.00%
发文量
45
审稿时长
4-8 weeks
期刊介绍: Developmental Neurobiology (previously the Journal of Neurobiology ) publishes original research articles on development, regeneration, repair and plasticity of the nervous system and on the ontogeny of behavior. High quality contributions in these areas are solicited, with an emphasis on experimental as opposed to purely descriptive work. The Journal also will consider manuscripts reporting novel approaches and techniques for the study of the development of the nervous system as well as occasional special issues on topics of significant current interest. We welcome suggestions on possible topics from our readers.
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