A nanowire-integrated microfluidic device for hydrodynamic trapping and anchoring of bacterial cells

D. Kwon, Jung Kim, Soochan Chung, I. Park
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引用次数: 2

Abstract

In this work, we proposed a novel method for facile hydrodynamic trapping and anchoring of bacterial cells using nanowire array with fishnet-like structure in microfluidic channel. Vertically well-aligned ZnO nanowires were directly synthesized onto side walls of microslit structures by hydrothermal method to form mesh-like cage structures. We found that the mesh-like cages were effective in trapping and anchoring of Escherichia coli cells as model bacteria. In addition, we observed two anchoring modes; impaling and wedging, by electron microscopy and they resulted in irreversible and reversible damage to the anchored cells, respectively. We expected that the suggested bacterial cell trapping method can be used as a simple cell-manipulating platform for advanced microfluidic system.
一种用于细菌细胞水动力学捕获和锚定的纳米线集成微流体装置
在本研究中,我们提出了一种在微流体通道中利用鱼网状纳米线阵列对细菌细胞进行水动力捕获和锚定的新方法。采用水热法将垂直排列良好的ZnO纳米线直接合成在微缝结构的侧壁上,形成网状笼状结构。我们发现网状笼可以有效地捕获和锚定大肠杆菌细胞作为模型细菌。此外,我们观察到两种锚定模式;通过电镜观察,刺穿和楔入分别对锚定细胞造成不可逆和可逆的损伤。我们期望所提出的细菌细胞捕获方法可以作为一种简单的细胞操作平台,用于先进的微流体系统。
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