Breath-, air- and surface-borne SARS-CoV-2 in hospitals
- Creators
- Zhou, Lian
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Yao, Maosheng
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Zhang, Xiang
- Hu, Bicheng
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Li, Xinyue
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Chen, Haoxuan
- Zhang, Lu
- Liu, Yun
- Du, Meng
- Sun, Bochao
- Jiang, Yunyu
- Zhou, Kai
- Hong, Jie
- Yu, Na
- Ding, Zhen
- Xu, Yan
- Hu, Min
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Morawska, Lidia
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Grinshpun, Sergey A.
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Biswas, Pratim
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Flagan, Richard C.
- Zhu, Baoli
- Liu, Wenqing
- Zhang, Yuanhang
Abstract
The COVID-19 pandemic has brought an unprecedented crisis to the global health sector. When discharging COVID-19 patients in accordance with throat or nasal swab protocols using RT-PCR, the potential risk of reintroducing the infection source to humans and the environment must be resolved. Here, 14 patients including 10 COVID-19 subjects were recruited; exhaled breath condensate (EBC), air samples and surface swabs were collected and analyzed for SARS-CoV-2 using reverse transcription-polymerase chain reaction (RT-PCR) in four hospitals with applied natural ventilation and disinfection practices in Wuhan. Here we discovered that 22.2% of COVID-19 patients (n = 9), who were ready for hospital discharge based on current guidelines, had SARS-CoV-2 in their exhaled breath (~10⁵ RNA copies/m³). Although fewer surface swabs (3.1%, n = 318) tested positive, medical equipment such as face shield frequently contacted/used by healthcare workers and the work shift floor were contaminated by SARS-CoV-2 (3–8 viruses/cm²). Three of the air samples (n = 44) including those collected using a robot-assisted sampler were detected positive by a digital PCR with a concentration level of 9–219 viruses/m³. RT-PCR diagnosis using throat swab specimens had a failure rate of more than 22% in safely discharging COVID-19 patients who were otherwise still exhaling the SARS-CoV-2 by a rate of estimated ~1400 RNA copies per minute into the air. Direct surface contact might not represent a major transmission route, and lower positive rate of air sample (6.8%) was likely due to natural ventilation (1.6–3.3 m/s) and regular disinfection practices. While there is a critical need for strengthening hospital discharge standards in preventing re-emergence of COVID-19 spread, use of breath sample as a supplement specimen could further guard the hospital discharge to ensure the safety of the public and minimize the pandemic re-emergence risk.
Additional Information
© 2020 Elsevier Ltd. Received 4 September 2020, Revised 5 October 2020, Accepted 6 October 2020, Available online 15 October 2020. This research was equally supported by the Chinese Academy of Engineering Grant (2020-ZD-15), and a National Natural Science Foundation of China (NSFC) grant (22040101) (PI: M. Yao) dedicated to the COVID-19 pandemic. This work was also partially supported by the NSFC Distinguished Young Scholars Fund Awarded to M. Yao (21725701), and the Scientific Research Fund of Jiangsu Provincial Health Committee (S2017002). CRediT authorship contribution statement: Lian Zhou: Data curation, Resources, Validation, Investigation. Maosheng Yao: Supervision, Conceptualization, Methodology, Data interpretation, Formal analysis, Resources, Investigation, Funding acquisition. Xiang Zhang: Data curation, Resources, Validation, Investigation. Bicheng Hu: Data curation, Resources, Validation, Investigation. Xinyue Li: Data curation, Resources, Validation, Investigation. Haoxuan Chen: Data curation, Resources, Validation, Investigation. Lu Zhang: Data curation, Resources, Validation, Investigation. Yun Liu: Data curation, Resources, Validation, Investigation. Meng Du: Data curation, Resources, Validation, Investigation. Bochao Sun: Data curation, Resources, Validation, Investigation. Yunyu Jiang: Data curation, Resources, Validation, Investigation. Kai Zhou: Data curation, Resources, Validation, Investigation. Jie Hong: Data curation, Resources, Validation, Investigation. Na Yu: Data curation, Resources, Validation, Investigation. Zhen Ding: Data curation, Resources, Validation, Investigation. Yan Xu: Data curation, Resources, Validation, Investigation. Min Hu: Data interpretation, Investigation, Writing - original draft, Writing - review & editing, Formal analysis, Validation. Lidia Morawska: Data interpretation, Investigation, Writing - original draft, Writing - review & editing, Formal analysis, Validation. Sergey A. Grinshpun: Data interpretation, Investigation, Writing - original draft, Writing - review & editing, Formal analysis, Validation. Pratim Biswas: Data interpretation, Investigation, Writing - original draft, Writing - review & editing, Formal analysis, Validation. Richard C. Flagan: Data interpretation, Investigation, Writing - original draft, Writing - review & editing, Formal analysis, Validation. Baoli Zhu: Supervision, Conceptualization, Methodology, Data interpretation, Formal analysis, Resources, Investigation, Funding acquisition. Wenqing Liu: Supervision, Conceptualization, Methodology, Data interpretation, Formal analysis, Resources, Investigation, Funding acquisition. Yuanhang Zhang: Supervision, Conceptualization, Methodology, Data interpretation, Formal analysis, Resources, Investigation, Funding acquisition. Declaration of competing interest: The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.Attached Files
Published - 1-s2.0-S0021850220301786-main.pdf
Submitted - 2020.05.31.20115196v1.full.pdf
Supplemental Material - 1-s2.0-S0021850220301786-mmc1.docx
Supplemental Material - 1-s2.0-S0021850220301786-mmc2.xlsx
Supplemental Material - 1-s2.0-S0021850220301786-mmc3.pdf
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Additional details
- Alternative title
- Detection of SARS-CoV-2 in Exhaled Breath from COVID-19 Patients Ready for Hospital Discharge
- PMCID
- PMC7557302
- Eprint ID
- 106296
- Resolver ID
- CaltechAUTHORS:20201027-093242333
- Chinese Academy of Engineering
- 2020-ZD-15
- National Natural Science Foundation of China
- 22040101
- National Natural Science Foundation of China
- 21725701
- Scientific Research Fund of Jiangsu Provincial Health Committee
- S2017002
- Created
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2020-10-27Created from EPrint's datestamp field
- Updated
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2023-06-01Created from EPrint's last_modified field
- Caltech groups
- COVID-19