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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Monitoring the growth and drug susceptibility of individual bacteria using asynchronous magnetic bead rotation sensors
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Monitoring the growth and drug susceptibility of individual bacteria using asynchronous magnetic bead rotation sensors

机译:使用异步磁珠旋转传感器监测单个细菌的生长和药物敏感性

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摘要

Continuous growth of individual bacteria has been previously studied by direct observation using optical imaging. However, optical microscopy studies are inherently diffraction limited and limited in the number of individual cells that can be continuously monitored. Here we report on the use of the asynchronous magnetic bead rotation (AMBR) sensor, which is not diffraction limited. The AMBR sensor allows for the measurement of nanoscale growth dynamics of individual bacterial cells, over multiple generations. This torque-based magnetic bead sensor monitors variations in drag caused by the attachment and growth of a single bacterial cell. In this manner, we observed the growth and division of individual Escherichia coli, with 80-nm sensitivity to the cell length. Over the life cycle of a cell, we observed up to a 300% increase in the rotational period of the biosensor due to increased cell volume. In addition, we observed single bacterial cell growth response to antibiotics. This work demonstrates the non-microscopy limited AMBR biosensor for monitoring individual cell growth dynamics, including cell elongation, generation time, lag time, and division, as well as their sensitivity to antibiotics.
机译:先前已经通过使用光学成像的直接观察研究了单个细菌的连续生长。但是,光学显微镜研究固有地受到衍射的限制,并且可以连续监测的单个细胞数量也受到限制。在此,我们报告了不受衍射限制的异步磁珠旋转(AMBR)传感器的使用。 AMBR传感器可以测量多个细菌个体细胞的纳米级生长动力学。这种基于扭矩的磁珠传感器可监测由单个细菌细胞的附着和生长引起的阻力变化。以这种方式,我们观察到单个大肠杆菌的生长和分裂,对细胞长度具有80 nm的敏感性。在细胞的整个生命周期中,我们观察到由于细胞体积的增加,生物传感器的旋转周期最多增加了300%。此外,我们观察到单个细菌细胞对抗生素的生长反应。这项工作演示了非显微镜限制的AMBR生物传感器,用于监测单个细胞的生长动力学,包括细胞伸长,生成时间,滞后时间和分裂以及它们对抗生素的敏感性。

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