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Cell differentiation guidance using chemical stimulation controlled by a microfluidic device

机译:使用微流控装置控制化学刺激的细胞分化指导

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This paper presents the testing of a cell differentiation control using a microfluidic device. The microfluidic device consists of a cell culture chamber, a microchannel, a microvalve, and a nano-hole array. Because these components are fabricated very close to one another, the microvalve switching allows precise control for releasing chemicals. Therefore, a cell cultured on the device is stimulated directly by chemicals through the nano-hole array. We cultured PC12 cells (adrenal pheochromocytoma) on the fabricated microfluidic device, and carried out experiments of cell differentiation guidance using the nerve growth factor (NGF) which enhances axonal outgrowth from a cell body. These results indicate that the cell growth depended on distance between the cell and the nano-hole array. Also, the cell differentiation and the axon elongation were affected materially by the frequency and the duty factor of the valve switching. Therefore, we can guide cell differentiation and axon elongation by controlling them using the fabricated device. (c) 2007 Elsevier B.V. All rights reserved.
机译:本文介绍了使用微流体装置进行细胞分化控制的测试。微流体装置由细胞培养室,微通道,微阀和纳米孔阵列组成。由于这些组件的制造非常接近,因此微阀切换可精确控制释放化学药品的过程。因此,通过纳米孔阵列的化学物质直接刺激在装置上培养的细胞。我们在制造的微流体装置上培养了PC12细胞(肾上腺嗜铬细胞瘤),并使用神经生长因子(NGF)增强了轴突从细胞体的生长,进行了细胞分化指导实验。这些结果表明细胞生长取决于细胞与纳米孔阵列之间的距离。同样,细胞分化和轴突伸长受到瓣膜转换的频率和占空因数的影响。因此,我们可以通过使用制造的设备控制细胞分化和轴突伸长来指导它们。 (c)2007 Elsevier B.V.保留所有权利。

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