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Design and fabrication of a dielectrophoresis-based cell-positioning and cell-culture device for construction of cell networks

机译:基于介电泳的细胞定位和细胞培养装置的设计和制造,用于细胞网络的构建

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In this paper, we describe the design and fabrication of a dielectrophoresis (DEP)-based cell-positioning and cell-culture device for the construction of cell networks. This device enables both individual cell positioning and cell culture. Titanium electrodes were fabricated by deposition. Furthermore, microchambers and microchannels composed of SU-8, which is a negative photoresist, were used to carry out cell culture and enable cell differentiation. Using our device, N1E-115 cells were individually positioned in the microchambers, and the positioning yield was 45%. After positioning, the cells could be continuously cultured in the microchambers. Furthermore, the cells differentiated, and their neurites extended through the microchannels after cultivation for several days. These results indicate that our device greatly increases the prospects for individual cell positioning and can be used to construct cell networks that have several applications in the medical field, for example, in drug screening.
机译:在本文中,我们描述了用于构建细胞网络的基于介电泳(DEP)的细胞定位和细胞培养设备的设计和制造。该设备可实现单个细胞定位和细胞培养。通过沉积来制造钛电极。此外,由SU-8(是负性光刻胶)组成的微腔和微通道用于进行细胞培养并实现细胞分化。使用我们的设备,将N1E-115细胞分别放置在微腔室中,定位产率为45%。定位后,可以在微腔室中连续培养细胞。此外,在培养数天之后,细胞分化,并且它们的神经突延伸通过微通道。这些结果表明,我们的设备极大地增加了单个细胞定位的前景,可用于构建在医学领域(例如,药物筛选)中具有多种应用的细胞网络。

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