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Electroosmotic flow driven microfluidic device for bacteria isolation using magnetic microbeads

机译:电渗流驱动的微流体装置用于利用磁性微珠分离细菌

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摘要

The presence of bacterial pathogens in water can lead to severe complications such as infection and food poisoning. This research proposes a point-of-care electroosmotic flow driven microfluidic device for rapid isolation and detection of E. coli in buffered solution (phosphate buffered saline solution). Fluorescent E. coli bound to magnetic microbeads were driven through the microfluidic device using both constant forward flow and periodic flow switching at concentrations ranging from 2 × 105 to 4 × 107 bacteria/mL. A calibration curve of fluorescent intensity as a function of bacteria concentration was created using both constant and switching flow, showing an increase in captured fluorescent pixel count as concentration increases. In addition, the use of the flow switching resulted in a significant increase in the capture efficiency of E. coli, with capture efficiencies up to 83% ± 8% as compared to the constant flow capture efficiencies (up to 39% ± 11%), with a sample size of 3 µL. These results demonstrate the improved performance associated with the use of the electroosmotic flow switching system in a point-of-care bacterial detection assay.
机译:水中细菌病原体的存在会导致严重的并发症,例如感染和食物中毒。这项研究提出了一种护理点电渗流驱动微流控设备,用于快速分离和检测缓冲液(磷酸盐缓冲盐溶液)中的大肠杆菌。使用恒定的正向流量和周期性流量切换,将结合磁性微珠的荧光大肠杆菌驱动通过微流体装置,浓度范围为2×10 5 到4×10 7 细菌/ mL。使用恒定流量和切换流量创建了荧光强度与细菌浓度的函数关系的校准曲线,表明随着浓度的增加,捕获的荧光像素数也随之增加。此外,使用流量开关可大大提高大肠杆菌的捕获效率,与恒定流量捕获效率(高达39%±11%)相比,捕获效率高达83%±±8%。 ,样品量为3 µL。这些结果证明了在护理点细菌检测测定中与电渗流切换系统的使用相关的改进的性能。

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