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Microfluidic device detection of waterborne pathogens through static light scattering of latex immunoagglutination using proximity optical fibers

机译:使用邻近光纤通过乳胶免疫凝集的静态光散射通过静态光散射进行微流体装置检测

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Microfluidic device detections of E. coli K12 in deionized (DI) water and E. coli in field water sample were demonstrated through static light scattering of latex immunoagglutination using proximity optical fibers. This method is a fully-automated, one-step detection, and requires neither sample pre-treatment nor cell culturing often required in many on-chip detections. We have used highly carboxylated polystyrene submicron latex particles without surfactants to enhance diffusional mixing and prevent non-specific bindings towards successful demonstration of latex immunoagglutination in microfluidic device. Detection of E. coli was performed by taking microscopic images from the view cell of a microfluidic device and counting the fractions of non-agglutinated and agglutinated particles. The limit of detection (LOD) was ca. 150 CFU ml~(-1) with this method for both E. coli K12 in DI water and E. coli in field water sample, indicating no non-specific bindings. Improved LOD of < 4.3 CFU ml~(-1) was achieved by measuring forward static light scattering from microfluidic device, using proximity optical fibers and a USB-powered miniature spectrometer. The total assay time for sample preparation (mostly dilutions) and on-chip assay (mostly injections and short incubation time) was < 10 min.
机译:通过使用近距离光纤通过胶乳免疫凝集的静态光散射来证明在去离子(DI)水和大肠杆菌中的微流体器件检测。该方法是完全自动化的一步检测,并且在许多片上检测中既不需要样品预处理也不需要细胞培养。我们使用了高度羧化的聚苯乙烯亚微米乳胶颗粒,没有表面活性剂,以增强微流体装置中胶乳免疫凝集成功示范的扩散混合并防止非特异性结合。通过从微流体装置的视野和计数非凝集和凝集颗粒的级分来进行大肠杆菌的检测。检测限(LOD)是CA. 150 CFU mL〜(-1)用该方法在DI水和大肠杆菌中的大肠杆菌K12在现场水样中,表明无特异性结合。通过使用接近光纤和USB供电的微型光谱仪测量来自微流体装置的前向静态光散射来实现<4.3CFU mL〜(-1)的改进的床位。样品制备(大多数稀释)和片上测定(主要注射和短孵育时间)的总测定时间<10分钟。

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