Kim Hyeong Rae, An Sanggwon, Hwang Jungho
School of Mechanical Engineering, Yonsei University, Seoul 03722, Republic of Korea.
ACS Sens. 2020 Sep 25;5(9):2763-2771. doi: 10.1021/acssensors.0c00555. Epub 2020 Jun 16.
Rapid monitoring of biological particulate matter (Bio-PM, bioaerosols) requires an enrichment technique for concentrating the Bio-PM dispersed in the air into a small volume of liquid. In this study, an electrostatic air sampler is employed to capture aerosolized test bacteria in a carrier liquid (aerosol-to-hydrosol (ATH) enrichment). Simultaneously, the captured bacteria are carried into a fluid channel for hydrosol-to-hydrosol (HTH) enrichment with Concanavalin A coated magnetic particles (CMPs). The ATH enrichment capacity of the air sampler was evaluated with an aerosol particle counter for the following test bacteria: , , , and . Then, the HTH enrichment capacity for the ATH-collected sample was evaluated using the colony-counting method, scanning electron microscopy based image analysis, fluorescence microscopy, electrical current measurements, and real-time quantitative polymerase chain reaction (qPCR). The ATH and HTH enrichment capacities for the given operation conditions were up to 80 000 and 14.9, respectively, resulting in a total enrichment capacity of up to 1.192 × 10. Given that air-to-liquid enrichment required to prepare detectable bacterial samples for real-time qPCR in field environments is of the order of at least 10, our method can be used to prepare a detectable sample from low-concentration airborne bacteria in the field and significantly reduce the time required for Bio-PM monitoring because of its enrichment capacity.
对生物颗粒物(Bio-PM,生物气溶胶)进行快速监测需要一种富集技术,以便将分散在空气中的Bio-PM浓缩到少量液体中。在本研究中,采用静电空气采样器在载液中捕获雾化的测试细菌(气溶胶水溶胶(ATH)富集)。同时,将捕获的细菌带入流体通道,用伴刀豆球蛋白A包被的磁性颗粒(CMPs)进行水溶胶-水溶胶(HTH)富集。使用气溶胶颗粒计数器对以下测试细菌评估空气采样器的ATH富集能力: 、 、 、和 。然后,使用菌落计数法、基于扫描电子显微镜的图像分析、荧光显微镜、电流测量和实时定量聚合酶链反应(qPCR)评估ATH收集样品的HTH富集能力。在给定操作条件下,ATH和HTH的富集能力分别高达80000和14.9,总富集能力高达1.192×10。鉴于在野外环境中为实时qPCR制备可检测细菌样品所需的气液富集至少为10的量级,我们的方法可用于从野外低浓度空气传播细菌中制备可检测样品,并因其富集能力而显著减少Bio-PM监测所需的时间。