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Amplification of chemotactic responses of motile bacterial cells for characterizing preferential chemotaxis toward carbon sources

机译:用于表征优先趋化性趋向碳源的运动细胞趋化响应的扩增

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A novel microfluidic device is described that can detect the chemotactic response of motile bacterial cells (Escherichia coli) that swim toward a preferred nutrient with high resolution by sorting and concentrating them. The device consists of the typical Y-shaped microchannels that have been widely used in chemotaxis studies to attract cells toward a high concentration and a concentrator array integrated with arrow head-shaped ratchet structures beside the main microchannel to trap and accumulate them. Since the number of accumulated cells in the concentrator array continuously increases with time, the device makes it possible to amplify the chemotactic responses of the cells to 10 times greater than that in the typical Y-shaped channels in 60 min. In addition, the device can characterize the chemotactic sensitivity of chemoreceptors to chemoeffectors by comparing the number of cells in the concentrator array at different distances from the channel junction. Since the device allows the analysis of the chemotactic responses and sensitivity of chemoreceptors with high resolution, we believe that not only can the device be broadly used for various microbial chemotaxis assays but it also can further the advancement of microbiology and even synthetic biology.
机译:描述了一种新型微流体装置,其可以通过分选并浓缩它们来检测朝向优选的营养素游泳的运动细胞细胞(大肠杆菌)的趋化反应。该装置由典型的Y形微通道组成,已广泛用于趋化性研究,以吸引朝向高浓度的细胞和集成的聚光器阵列,与主微通道旁边的箭头头形棘轮结构相结合以捕获并积累它们。由于集中器阵列中的累积单元的数量随时间连续增加,因此该装置使得可以在60分钟内将电池的趋化响应放大到典型的Y形通道中的10倍。此外,该装置可以通过比较来自通道结的不同距离处的聚光器阵列中的细胞数来表征化学感应器对化学成交器的趋化敏感性。由于该装置允许分析高分辨率的化学感受器的趋化反应和敏感性,因此我们认为该装置不仅可以广泛地用于各种微生物趋化性测定,但也可以进一步进一步推进微生物学和均匀的合成生物学。

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