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Asynchronous magnetic bead rotation (AMBR) biosensor in microfluidic droplets for rapid bacterial growth and susceptibility measurements

机译:微流液滴中的异步磁珠旋转(AMBR)生物传感器,用于快速细菌生长和药敏性测量

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摘要

Inappropriate antibiotic use is a major factor contributing to the emergence and spread of antimicrobial resistance. The long turnaround time (over 24 hours) required for clinical antimicrobial susceptibility testing (AST) often results in patients being prescribed empiric therapies, which may be inadequate, inappropriate, or overly broad-spectrum. A reduction in the AST time may enable more appropriate therapies to be prescribed earlier. Here we report on a new diagnostic asynchronous magnetic bead rotation (AMBR) biosensor droplet microfluidic platform that enables single cell and small cell population growth measurements for applications aimed at rapid AST. We demonstrate the ability to rapidly measure bacterial growth, susceptibility, and the minimum inhibitory concentration (MIC) of a small uropathogenic Escherichia coli population that was confined in microfluidic droplets and exposed to concentrations above and below the MIC of gentamicin. Growth was observed below the MIC, and no growth was observed above the MIC. A 52% change in the sensor signal {i.e. rotational period) was observed within 15 minutes, thus allowing AST measurements to be performed potentially within minutes.
机译:抗生素使用不当是造成抗菌素耐药性出现和扩散的主要因素。临床抗菌药敏测试(AST)所需的周转时间较长(超过24小时),通常会导致患者被处方为经验疗法,这可能是不足的,不合适的或过于广谱的。 AST时间的减少可以使更早地开出更合适的疗法。在这里,我们报告了一个新的诊断异步磁珠旋转(AMBR)生物传感器液滴微流控平台,该平台可实现针对快速AST应用的单细胞和小细胞群体生长测量。我们证明了能够快速测量细菌生长,药敏性和小尿路致病性大肠杆菌种群的最小抑菌浓度(MIC)的能力,该种群被限制在微流液滴中并暴露于庆大霉素的MIC之上和之下的浓度。在MIC以下观察到生长,而在MIC之上未观察到生长。传感器信号发生52%的变化{在15分钟内观察到旋转周期),因此可以在几分钟内进行AST测量。

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