神经科学
祖细胞
大脑皮层
生物
神经干细胞
皮质(解剖学)
祖细胞
谱系(遗传)
类有机物
细胞生物学
新皮层
中枢神经系统
神经发生
神经发育
室下区
神经母细胞
干细胞
前体细胞
神经上皮细胞
电池类型
细胞
基因
生物化学
遗传学
作者
Lin Yang,Jiajun Yang,Zhongfu Shen,Jian Ma,Benjamin D. Simons,Song-Hai Shi
标识
DOI:10.1016/j.conb.2020.10.017
摘要
The cerebral cortex is a central structure in the mammalian brain that enables higher cognitive functions and intellectual skills. It is the hallmark of the mammalian nervous system with enormous complexity, consisting of a large number of neurons and glia that are diverse in morphology, molecular expression, biophysical properties, circuit connectivity and physiological function. Cortical neurons and glia are generated by neural progenitor cells during development. Ensuring the correct cell cycle kinetics, fate behavior and lineage progression of neural progenitor cells is essential to determine the number and types of neurons and glia in the cerebral cortex, which together constitute neural circuits for brain function. In this review, we discuss recent findings on mammalian cortical progenitor cell types and their lineage behaviors in generating neurons and glia, cortical evolution and expansion, and advances in brain organoid technology that allow the modeling of human cortical development under normal and disease conditions.
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