严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)
2019年冠状病毒病(COVID-19)
环境科学
采样(信号处理)
空气质量指数
2019-20冠状病毒爆发
周转时间
遥感
计算机科学
实时计算
病毒学
气象学
传染病(医学专业)
电信
医学
地理
病理
爆发
疾病
操作系统
探测器
作者
Joseph V. Puthussery,Dishit P. Ghumra,Kevin R. McBrearty,Brookelyn M. Doherty,Benjamin J. Sumlin,Amirhossein Sarabandi,Anushka Garg Mandal,Nishit Shetty,Woodrow D. Gardiner,Jordan P. Magrecki,David L. Brody,Thomas J. Esparza,Traci L. Bricker,Adrianus C. M. Boon,Carla M. Yuede,John R. Cirrito,Rajan K. Chakrabarty
标识
DOI:10.1038/s41467-023-39419-z
摘要
Abstract Real-time surveillance of airborne SARS-CoV-2 virus is a technological gap that has eluded the scientific community since the beginning of the COVID-19 pandemic. Offline air sampling techniques for SARS-CoV-2 detection suffer from longer turnaround times and require skilled labor. Here, we present a proof-of-concept pathogen Air Quality (pAQ) monitor for real-time (5 min time resolution) direct detection of SARS-CoV-2 aerosols. The system synergistically integrates a high flow (~1000 lpm) wet cyclone air sampler and a nanobody-based ultrasensitive micro-immunoelectrode biosensor. The wet cyclone showed comparable or better virus sampling performance than commercially available samplers. Laboratory experiments demonstrate a device sensitivity of 77–83% and a limit of detection of 7-35 viral RNA copies/m 3 of air. Our pAQ monitor is suited for point-of-need surveillance of SARS-CoV-2 variants in indoor environments and can be adapted for multiplexed detection of other respiratory pathogens of interest. Widespread adoption of such technology could assist public health officials with implementing rapid disease control measures.
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