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Real-time monitoring of bioaerosols via cell-lysis by air ion and ATP bioluminescence detection

机译:通过空气离子和ATP生物发光检测通过细胞裂解实时监测生物气溶胶

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摘要

In this study, we introduce a methodology for disrupting cell membranes with air ions coupled with ATP bioluminescence detection for real-time monitoring of bioaerosol concentrations. A carbon fiber ionizer was used to extract ATP from bacterial cells for generating ATP bioluminescence. Our methodology was tested using Staphylococcus epidermidis and Escherichia coli, which were aerosolized with an atomizer, and then indoor bioaerosols were also used for testing the methodology. Bioaerosol concentrations were estimated without culturing which requires several days for colony formation. Correlation equations were obtained for results acquired using our methodology (Relative Luminescent Unit (RLU)/m3) and a culture-based (Colony Forming Unit (CFU)/m3) method; CFU/m~3 = 1.8 × measured RLU/m3 for S. epidermidis and E. coli, and CFU/m~3 = l.l × measured RLU/m3 for indoor bioaerosols under the experimental conditions. Our methodology is an affordable solution for rapidly monitoring bioaerosols due to rapid detection time (cell-lysis time: 3 min; bioluminescence detection time: < 1 min) and easy operation.
机译:在这项研究中,我们介绍了一种通过空气离子破坏细胞膜并结合ATP生物发光检测以实时监测生物气溶胶浓度的方法。使用碳纤维电离器从细菌细胞中提取ATP,以产生ATP生物发光。我们的方法是使用表皮葡萄球菌和大肠杆菌进行测试,并用雾化器进行雾化,然后还将室内生物气溶胶用于测试方法。不进行培养就估计了生物气溶胶浓度,这需要几天的时间才能形成菌落。使用我们的方法(相对发光单位(RLU)/ m3)和基于培养物的方法(菌落形成单位(CFU)/ m3)获得相关方程式。在实验条件下,表皮链球菌和大肠杆菌的CFU / m〜3 = 1.8×测得的RLU / m3,室内生物气溶胶的CFU / m〜3 = 1.l×测得的RLU / m3。由于检测时间短(细胞裂解时间:3分钟;生物发光检测时间:<1分钟)且操作简便,我们的方法是一种可负担得起的解决方案,用于快速监测生物气溶胶。

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