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采用 ATP 生物发光法与环介导等温扩增相结合的方法对生物气溶胶进行定性和定量在线监测系统。

Online monitoring system for qualitative and quantitative analysis of bioaerosols by combined ATP bioluminescence assay with loop-mediated isothermal amplification.

机构信息

Guangdong-Hong Kong-Macao Joint Laboratory for Contaminants Exposure and Health, Guangdong Key Laboratory of Environmental Catalysis and Health Risk Control, Institute of Environmental Health and Pollution Control, Guangdong University of Technology, Guangzhou 510006, China.

Guangdong-Hong Kong-Macao Joint Laboratory for Contaminants Exposure and Health, Guangdong Key Laboratory of Environmental Catalysis and Health Risk Control, Institute of Environmental Health and Pollution Control, Guangdong University of Technology, Guangzhou 510006, China; Guangzhou Key Laboratory of Environmental Catalysis and Pollution Control, Guangdong Engineering Technology Research Center for Photocatalytic Technology Integration and Equipment, School of Environmental Science and Engineering, Guangdong University of Technology, Guangzhou 510006, China.

出版信息

Sci Total Environ. 2024 Aug 10;937:173404. doi: 10.1016/j.scitotenv.2024.173404. Epub 2024 May 24.

Abstract

Rapid detection of airborne pathogens is crucial in preventing respiratory infections and allergies. However, technologies aiming to real-time analysis of microorganisms in air remain limited due to the sparse and complex nature of bioaerosols. Here, we introduced an online bioaerosol monitoring system (OBMS) comprised of integrated units including a rotatable stainless-steel sintered filter-based sampler, a lysis unit for extracting adenosine triphosphate (ATP), and a single photon detector-based fluorescence unit. Through optimization of the ATP bioluminescence method and establishment of standard curves between relative luminescence units (RLUs) and ATP as well as microbial concentration, we achieved simultaneous detection of bioaerosols' concentration and activity. Testing OBMS with four bacterial and two fungal aerosols at a sampling flow rate of 10 to 50 L/min revealed an outstanding collection efficiency of 95 % at 30 L/min. A single OBMS measurement takes only 8 min (sampling: 5 min; lysis and detection: 3 min) with detection limits of 3 Pcs/ms photons (2.9 × 10 and 292 CFU/m for Staphylococcus aureus and Candida albicans aerosol). In both laboratory and field tests, OBMS detected higher concentrations of bioaerosol compared to the traditional Andersen impactor and liquid biosampler. When combined OBMS with loop-mediated isothermal amplification (LAMP), the bioaerosol can be qualitative and quantitative analyzed within 40 min without the cumbersome procedures of sample pretreatment and DNA extraction. These results offer a high compressive and humidity resistance membrane filtration sampler and validate the potential of OBMS for online measurement of bioaerosol concentration and composition.

摘要

空气中病原体的快速检测对于预防呼吸道感染和过敏至关重要。然而,由于生物气溶胶的稀疏和复杂性质,旨在实时分析空气中微生物的技术仍然有限。在这里,我们引入了一种在线生物气溶胶监测系统(OBMS),该系统由集成单元组成,包括旋转式不锈钢烧结滤器采样器、用于提取三磷酸腺苷(ATP)的裂解单元和基于单光子探测器的荧光单元。通过优化 ATP 生物发光法并建立相对发光单位(RLU)与 ATP 以及微生物浓度之间的标准曲线,我们实现了生物气溶胶浓度和活性的同时检测。以 10 至 50 L/min 的采样流速对 OBMS 进行了四种细菌和两种真菌气溶胶的测试,在 30 L/min 时,收集效率达到了 95%。单个 OBMS 测量仅需 8 分钟(采样:5 分钟;裂解和检测:3 分钟),检测限为 3 个 Pcs/ms 光子(金黄色葡萄球菌和白色念珠菌气溶胶分别为 2.9×10 和 292 CFU/m)。在实验室和现场测试中,OBMS 检测到的生物气溶胶浓度均高于传统的安德森撞击器和液体生物采样器。当将 OBMS 与环介导等温扩增(LAMP)结合使用时,无需繁琐的样品预处理和 DNA 提取步骤,即可在 40 分钟内对生物气溶胶进行定性和定量分析。这些结果提供了一种具有高抗压和高湿度耐受性的膜过滤采样器,并验证了 OBMS 用于在线测量生物气溶胶浓度和组成的潜力。

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