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Optofluidic realization and retaining of cell–cell contact using an abrupt tapered optical fibre

机译:使用突变锥形光纤的光流体实现和细胞间接触保持

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摘要

Studies reveal that there exists much interaction and communication between bacterial cells, with parts of these social behaviors depending on cell–cell contacts. The cell–cell contact has proved to be crucial for determining various biochemical processes. However, for cell culture with relatively low cell concentration, it is difficult to precisely control and retain the contact of a small group of cells. Particularly, the retaining of cell–cell contact is difficult when flows occur in the medium. Here, we report an optofluidic method for realization and retaining of Escherichia coli cell–cell contact in a microfluidic channel using an abrupt tapered optical fibre. The contact process is based on launching a 980-nm wavelength laser into the fibre, E. coli cells were trapped onto the fibre tip one after another, retaining cell–cell contact and forming a highly organized cell chain. The formed chains further show the ability as bio-optical waveguides.
机译:研究表明,细菌细胞之间存在许多相互作用和交流,而这些社会行为的一部分取决于细胞与细胞之间的接触。事实证明,细胞间接触对于确定各种生化过程至关重要。然而,对于具有相对低细胞浓度的细胞培养,难以精确地控制和保持一小组细胞的接触。特别是,当介质中发生流动时,很难保持细胞间的接触。在这里,我们报告了一种使用突变的锥形光纤在微流体通道中实现和保持大肠杆菌细胞间接触的光流体方法。接触过程基于向光纤发射980 nm波长的激光,大肠杆菌细胞被一层又一层地捕获到光纤尖端,保持细胞间的接触并形成高度组织化的细胞链。形成的链进一步显示出作为生物光学波导的能力。

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