首页> 外文期刊>The Journal of Comparative Neurology >Self-organization of neural tissue architectures from pluripotent stem cells.
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Self-organization of neural tissue architectures from pluripotent stem cells.

机译:来自多能干细胞的神经组织结构的自组织。

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摘要

Despite being a subject of intensive research, the mechanisms underlying the formation of neural tissue architectures during development of the central nervous system remain largely enigmatic. So far, studies into neural pattern formation have been restricted mainly to animal experiments. With the advent of pluripotent stem cells it has become possible to explore early steps of nervous system development in vitro. These studies have unraveled a remarkable propensity of primitive neural cells to self-organize into primitive patterns such as neural tube-like rosettes in vitro. Data from more advanced 3D culture systems indicate that this intrinsic propensity for self-organization can even extend to the formation of complex architectures such as a multilayered cortical neuroepithelium or an entire optic cup. These novel experimental paradigms not only demonstrate the enormous self-organization capacity of neural stem cells, they also provide exciting prospects for studying the earliest steps of human neural tissue development and the pathogenesis of brain malformations in reductionist in vitro paradigms.
机译:尽管是深入研究的主题,但在中枢神经系统发育过程中神经组织结构形成的潜在机制仍然十分神秘。到目前为止,对神经模式形成的研究主要限于动物实验。随着多能干细胞的出现,在体外探索神经系统发育的早期步骤成为可能。这些研究揭示了原始神经细胞在体外自组织成原始模式(例如神经管状玫瑰花结)的显着倾向。来自更先进的3D培养系统的数据表明,这种自组织的内在倾向甚至可以扩展到复杂结构的形成,例如多层皮质神经上皮或整个视杯。这些新颖的实验范例不仅证明了神经干细胞的巨大自组织能力,它们还为研究人类神经组织发展的最早步骤以及还原论者体外范例中脑畸形的发病机理提供了令人兴奋的前景。

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