Stem cell patterning in the single cell microchip platform

Ching-Hsing Luo, T. Hsieh, Ji-Fu Lin, I-Chung Chun, Mao-Tsun Lin, Ching-Ting Lee
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Abstract

On the way to open the mysteries of life in genome, single cell platform becomes one crucial tool to explore the electrochemical and electrophysiologic behavior of single cells such as stem cell for tissue engineering. As the pilot study of such a platform, we have successfully implemented stem cell patterning on an array of electrodes in the gold-silicon wafer by using microcontact printing technique. Several interesting behavior were found as single stem cells slicked on the electrodes coated with cell-favored material. A stem cell would like to stretch itself to cover the whole area of the electrode as much as it could no matter how the geometry of the electrode looked like. However, the cell would rather rest on the edge of the electrode when it was unable to stretch itself to cover the whole electrode area. In the next step, we are building up the single cell platform by implementing the whole-cell clamp or patch clamp on the electrode array
单细胞微芯片平台上的干细胞图谱
在揭开基因组生命奥秘的道路上,单细胞平台成为组织工程研究干细胞等单细胞电化学和电生理行为的重要工具。作为该平台的试点研究,我们已经成功地利用微接触印刷技术在金硅晶圆上的电极阵列上实现了干细胞图像化。当单个干细胞在涂有有利于细胞的材料的电极上光滑时,发现了几个有趣的行为。无论电极的几何形状如何,干细胞都会尽可能地伸展自己,以覆盖电极的整个区域。然而,当细胞无法伸展自己以覆盖整个电极区域时,细胞宁愿停留在电极的边缘。下一步,我们将通过在电极阵列上实施全细胞钳或膜片钳来构建单细胞平台
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