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首页> 外文期刊>Biotechnology Letters >Compartmental culture of embryonic stem cell-derived neurons in microfluidic devices for use in axonal biology
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Compartmental culture of embryonic stem cell-derived neurons in microfluidic devices for use in axonal biology

机译:轴突生物学中微流控设备中胚胎干细胞源性神经元的区室培养

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摘要

Axonal pathology has been clearly implicated in neurodegenerative diseases making the compartmental culture of neurons a useful research tool. Primary neurons have already been cultured in compartmental microfluidic devices but their derivation from an animal is a time-consuming and difficult work and has a limit in their sources. Embryonic stem cell (ESC)-derived neurons (ESC_Ns) overcome this limit, since ESCs can be renewed without limit and can be differentiated into ESC_Ns by robust and reproducible protocols. In this research, ESC_Ns were derived from mouse ESCs in compartmental microfluidic devices, and their axons were isolated from the somal cell bodies. Once embryoid bodies (EBs) were localized in the microfluidic culture chamber, ESC_Ns spread out from the EBs and occupied the cell culture chamber. Their axons traversed the microchannels and finally were isolated from the somata, providing an arrangement comparable to dissociated primary neurons. This ESC_N compartmental microfluidic culture system not only offers a substitute for the primary neuron counterpart system but also makes it possible to make comparisons between the two systems.
机译:轴突病理学已经明确地涉及神经退行性疾病,使得神经元的隔室培养成为有用的研究工具。原代神经元已经在隔室微流体装置中进行培养,但是它们源自动物的过程既费时又困难,并且其来源受到限制。胚胎干细胞(ESC)衍生的神经元(ESC_Ns)克服了这一限制,因为ESC可以不受限制地进行更新,并且可以通过可靠且可重现的协议分化为ESC_Ns。在这项研究中,ESC_Ns来自隔室微流体装置中的小鼠ESC,其轴突是从体细胞体中分离出来的。一旦将胚状体(EBs)定位在微流控培养室中,ESC_Ns从EBs扩散并占据了细胞培养室。他们的轴突横穿微通道,最后从躯体中分离出来,提供了与游离初级神经元相当的排列方式。这种ESC_N隔室微流控培养系统不仅可以替代原代神经元对应系统,还可以在两个系统之间进行比较。

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