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Integrated micro-optofluidic platform for real-time detection of airborne microorganisms

机译:集成的微光流体平台可实时检测空气中的微生物

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摘要

We demonstrate an integrated micro-optofluidic platform for real-time, continuous detection and quantification of airborne microorganisms. Measurements of the fluorescence and light scattering from single particles in a microfluidic channel are used to determine the total particle number concentration and the microorganism number concentration in real-time. The system performance is examined by evaluating standard particle measurements with various sample flow rates and the ratios of fluorescent to non-fluorescent particles. To apply this method to real-time detection of airborne microorganisms, airborne Escherichia coli, Bacillus subtilis, and Staphylococcus epidermidis cells were introduced into the micro-optofluidic platform via bioaerosol generation, and a liquid-type particle collection setup was used. We demonstrate successful discrimination of SYTO82-dyed fluorescent bacterial cells from other residue particles in a continuous and real-time manner. In comparison with traditional microscopy cell counting and colony culture methods, this micro-optofluidic platform is not only more accurate in terms of the detection efficiency for airborne microorganisms but it also provides additional information on the total particle number concentration.
机译:我们展示了一个集成的微光流体平台,用于实时,连续地检测和量化空气中的微生物。微流控通道中单个颗粒的荧光和光散射的测量用于实时确定总颗粒数浓度和微生物数浓度。通过评估具有各种样品流率的标准颗粒测量值以及荧光颗粒与非荧光颗粒的比率,可以检查系统性能。为了将这种方法应用于空气中微生物的实时检测,通过生物气雾剂将空气中的大肠杆菌,枯草芽孢杆菌和表皮葡萄球菌细胞引入了微光液平台,并使用了液体型颗粒收集装置。我们展示了成功地将SYTO82染色的荧光细菌细胞与其他残留颗粒以连续和实时的方式区别开来。与传统的显微镜细胞计数和菌落培养方法相比,该微光流体平台不仅在空中传播微生物的检测效率方面更加准确,而且还提供了有关总颗粒数浓度的更多信息。

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