Electrodeposition of alginate hydrogel for spatially selective entrapment of biological cells

Zeyang Liu, Masaru Takeuchi, M. Nakajima, T. Fukuda, Y. Hasegawa, Qiang Huang
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Abstract

In this paper, an electrodeposition method was applied to construct cell patterning structures by an alginate hydrogel. The liver cells (RLC-18) were trapped selectively within alginate structures on the micro-patterning electrodes, which were fabricated by a photo-lithography process in circular, ring, and triangle structures. The living conditions of RLC-18 cells were confirmed until 3 days. These results indicate that biological cells were entrapped inside arbitrary shape hydrogel structures in living conditions. The fabricated 2D biological structures are important to be applied for 3D assembly of biological cells for tissue engineering applications.
电沉积海藻酸盐水凝胶的空间选择性包裹生物细胞
本文采用电沉积的方法,利用海藻酸盐水凝胶构建细胞图纹结构。肝细胞(RLC-18)被选择性地捕获在微图纹电极上的海藻酸盐结构中,这些微图纹电极通过光刻工艺制成圆形,环状和三角形结构。确认RLC-18细胞存活至3天。这些结果表明生物细胞在生活条件下被包裹在任意形状的水凝胶结构中。所制备的二维生物结构对于组织工程中生物细胞的三维组装具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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