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首页> 外文期刊>Nature neuroscience >Human cerebral cortex development from pluripotent stem cells to functional excitatory synapses
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Human cerebral cortex development from pluripotent stem cells to functional excitatory synapses

机译:人脑皮质从多能干细胞发展为功能性兴奋性突触

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摘要

Efforts to study the development and function of the human cerebral cortex in health and disease have been limited by the availability of model systems. Extrapolating from our understanding of rodent cortical development, we have developed a robust, multistep process for human cortical development from pluripotent stem cells: directed differentiation of human embryonic stem (ES) and induced pluripotent stem (iPS) cells to cortical stem and progenitor cells, followed by an extended period of cortical neurogenesis, neuronal terminal differentiation to acquire mature electrophysiological properties, and functional excitatory synaptic network formation. We found that induction of cortical neuroepithelial stem cells from human ES cells and human iPS cells was dependent on retinoid signaling. Furthermore, human ES cell and iPS cell differentiation to cerebral cortex recapitulated in vivo development to generate all classes of cortical projection neurons in a fixed temporal order. This system enables functional studies of human cerebral cortex development and the generation of individual-specific cortical networks ex vivo for disease modeling and therapeutic purposes.
机译:模型系统的可用性限制了研究人类大脑皮质在健康和疾病中的发育和功能的努力。从对啮齿动物皮层发育的理解中推断出,我们已经开发了一种强大的,多步骤的人类多能干细胞对人类皮质发育的过程:人类胚胎干细胞(ES)和诱导性多能干细胞(iPS)定向分化为皮质干细胞和祖细胞,然后延长皮质神经发生,神经元终末分化以获得成熟的电生理特性以及功能性兴奋性突触网络的形成。我们发现从人类ES细胞和人类iPS细胞诱导的皮质神经上皮干细胞依赖于类维生素A信号传导。此外,人类ES细胞和iPS细胞向大脑皮层的分化概括了体内发育,从而以固定的时间顺序生成了所有类别的皮质投影神经元。该系统能够进行人类大脑皮层发育的功能研究,以及用于疾病建模和治疗目的的离体个体特异性皮层网络的生成。

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