具有细胞生长引导的柔性再生微电极

R. Gojo, N. Kotake, Takafumi Suzuki, K. Mabuchi, S. Takeuchi
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引用次数: 1

摘要

在这项研究中,我们在一个薄的圆盘状探针上制造了一个细胞向导,该探针带有许多微孔,将被植入轴突断端之间;细胞向导通过探针上的孔引导再生轴突(图1(a))。由于细胞生长很大程度上受衬底地形的影响[1-3],我们设计了一种具有特定形状的SU8微流体细胞导管(图1(b)),通过引导细胞通过孔生长来防止细胞的随机扩散。该指南可以减少跨越两个不同电极的电池导致探头短路的机会。此外,当细胞被引导通过孔生长时,我们可以用我们微制造的金电极测量它们的电位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Flexible Regeneration Microelectrode with Cell-Growth Guidance
In this study we fabricate a cell-guide on a thin disc-shaped probe with numerous microholes to be implanted between the severed stumps of axons; the cell-guide directs the regenerating axons though the holes in our probe (Fig. 1(a)). Since cell growth is greatly influenced by the topography of the substrate [1-3] we design a SU8 microfluidic cell-guide with a particular shape (Fig. 1(b)) to prevent the random spreading of cells by directing cell growth through the holes. This guide may reduce the chance of short-circuits of the probe by cells that span two different electrodes. Furthermore, as the cells are directed to grow through the holes, we can measure their electrical potential with gold electrodes that we micro-fabricate.
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