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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Micropillar-based microfluidic device to regulate neurite networks of uniform-sized neurospheres
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Micropillar-based microfluidic device to regulate neurite networks of uniform-sized neurospheres

机译:基于Micropillar的微流体装置,用于调节均匀尺寸的神经球的神经突网络

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摘要

The inability of neurons to undergo mitosis renders damage to the central or peripheral nervous system. Neural stem cell therapy could provide a path for treating the neurodegenerative diseases. However, reliable and simple tools for the developing and testing neural stem cell therapy are still required. Here, we show the development of a micropillar-based microfluidic device to trap the uniform-sized neurospheres. The neurospheres trapped within micropillar arrays were largely differentiated into neuronal cells, and their neurite networks were observed in the microfluidic device. Compared to conventional cultures on glass slides, the neurite networks generated with this method have a higher reproducibility. Furthermore, we demonstrated the effect of thapsigargin on the neurite networks in the microfluidic device, demonstrating that neural networks exposed to thapsigargin were largely diminished and disconnected from each other. Therefore, this micropillar-based microfluidic device could be a potential tool for screening of neurotoxins.
机译:神经元无法接受有丝分裂的损伤对中央或外周神经系统的损害。神经干细胞疗法可以提供治疗神经退行性疾病的途径。然而,仍然需要可靠和简单的开发和测试神经干细胞疗法的工具。在这里,我们表明了基于微量的微流体装置的开发,以捕获均匀尺寸的神经球体。捕获在微米阵列内的神经球体在很大程度上被分化为神经元细胞,并且在微流体装置中观察到它们的神经突网络。与玻璃载玻片上的常规培养相比,用该方法产生的神经突网络具有更高的再现性。此外,我们证明了Thapsigargin对微流体装置中的神经突网络的影响,表明暴露于ThapsIgargin的神经网络大大降低和彼此断开。因此,这种基于微量的微流体装置可以是用于筛选神经毒素的潜在工具。

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