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Molecular stages of rapid and uniform neuralization of human embryonic stem cells.

机译:人类胚胎干细胞快速均匀神经化的分子阶段。

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摘要

Insights into early human development are fundamental for our understanding of human biology. Efficient differentiation of human embryonic stem cells (hESCs) into neural precursor cells is critical for future cell-based therapies. Here, using defined conditions, we characterized a new method for rapid and uniform differentiation of hESCs into committed neural precursor cells (designated C-NPCs). Dynamic gene expression analysis identified several distinct stages of ESC neuralization and revealed functional modules of coregulated genes and pathways. The first wave of gene expression changes, likely corresponding to the transition through primitive ectoderm, started at day 3, preceding the formation of columnar neuroepithelial rosettes. The second wave started at day 5, coinciding with the formation of rosettes. The majority of C-NPCs were positive for both anterior and posterior markers of developing neuroepithelium. In culture, C-NPCs became electrophysiologically functional neurons; on transplantation into neonatal mouse brains, C-NPCs integrated into the cortex and olfactory bulb, acquiring appropriate neuronal morphologies and markers. Compared to rosette-NPCs,(1) C-NPCs exhibited limited in vitro expansion capacity and did not express potent oncogenes such as PLAG1 or RSPO3. Concordantly, we never detected tumors or excessive neural proliferation after transplantation of C-NPCs into mouse brains. In conclusion, our study provides a framework for future analysis of molecular signaling during ESC neuralization.
机译:对人类早期发展的见识对于我们对人类生物学的理解至关重要。人类胚胎干细胞(hESCs)高效分化为神经前体细胞对于未来基于细胞的疗法至关重要。在这里,使用定义的条件,我们表征了一种新的方法,用于将hESC快速均匀地分化为定型的神经前体细胞(指定为C-NPC)。动态基因表达分析确定了ESC神经化的几个不同阶段,并揭示了整合基因和途径的功能模块。基因表达的第一波变化可能与通过原始外胚层的转变有关,始于第3天,即柱状神经上皮玫瑰花结的形成。第二次浪潮始于第5天,与玫瑰花结的形成相吻合。大多数C-NPC的神经上皮发育的前标志和后标志均为阳性。在文化中,C-NPCs成为电生理功能神经元。在移植到新生小鼠大脑中后,C-NPC整合到皮层和嗅球中,获得适当的神经元形态和标记。与玫瑰花NPCs相比,(1)C-NPCs的体外扩增能力有限,并且不表达有效的癌基因,例如PLAG1或RSPO3。相应地,在将C-NPC移植到小鼠大脑后,我们从未发现肿瘤或过度的神经增殖。总之,我们的研究为将来在ESC神经化过程中进行分子信号分析提供了框架。

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