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Review
. 2021 May 1:276:115767.
doi: 10.1016/j.envpol.2020.115767. Epub 2020 Nov 6.

The role of respiratory droplet physicochemistry in limiting and promoting the airborne transmission of human coronaviruses: A critical review

Affiliations
Review

The role of respiratory droplet physicochemistry in limiting and promoting the airborne transmission of human coronaviruses: A critical review

Sadegh Niazi et al. Environ Pollut. .

Abstract

Whether virulent human pathogenic coronaviruses (SARS-CoV, MERS-CoV, SARS-CoV-2) are effectively transmitted by aerosols remains contentious. Transmission modes of the novel coronavirus have become a hot topic of research with the importance of airborne transmission controversial due to the many factors that can influence virus transmission. Airborne transmission is an accepted potential route for the spread of some viral infections (measles, chickenpox); however, aerosol features and infectious inoculum vary from one respiratory virus to another. Infectious virus-laden aerosols can be produced by natural human respiratory activities, and their features are vital determinants for virus carriage and transmission. Physicochemical characteristics of infectious respiratory aerosols can influence the efficiency of virus transmission by droplets. This critical review identifies studies reporting instances of infected patients producing airborne human pathogenic coronaviruses, and evidence for the role of physical/chemical characteristics of human-generated droplets in altering embedded viruses' viability. We also review studies evaluating these viruses in the air, field studies and available evidence about seasonality patterns. Ultimately the literature suggests that a proportion of virulent human coronaviruses can plausibly be transmitted via the air, even though this might vary in different conditions. Evidence exists for respirable-sized airborne droplet nuclei containing viral RNA, although this does not necessarily imply that the virus is transmittable, capable of replicating in a recipient host, or that inoculum is sufficient to initiate infection. However, evidence suggests that coronaviruses can survive in simulated droplet nuclei for a significant time (>24 h). Nevertheless, laboratory nebulized virus-laden aerosols might not accurately model the complexity of human carrier aerosols in studying airborne viral transport. In summary, there is disagreement on whether wild coronaviruses can be transmitted via an airborne path and display seasonal patterns. Further studies are therefore required to provide supporting evidence for the role of airborne transmission and assumed mechanisms underlying seasonality.

Keywords: Airborne transmission; Coronaviruses; SARS; Seasonality.

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Conflict of interest statement

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.

Figures

Image 1
Graphical abstract
Fig. 1
Fig. 1
The origin and generation mechanism of respiratory droplets.

References

    1. Al-Ahmadi K., Alahmadi S., Al-Zahrani A. Spatiotemporal clustering of Middle East respiratory syndrome coronavirus (MERS-CoV) incidence in Saudi Arabia, 2012-2019. Int. J. Environ. Res. Publ. Health. 2019;16 - PMC - PubMed
    1. Ali M., Lillehoj E.P., Park Y., Kyo Y., Kim K.C. Analysis of the proteome of human airway epithelial secretions. Proteome Sci. 2011;9:4. - PMC - PubMed
    1. Almstrand A.-C., Bake B., Ljungström E., Larsson P., Bredberg A., Mirgorodskaya E., Olin A.-C. Effect of airway opening on production of exhaled particles. J. Appl. Physiol. 2010;108:584–588. - PubMed
    1. Almstrand A.-C., Ljungström E., Lausmaa J., Bake B., Sjövall P., Olin A.-C. Airway monitoring by collection and mass spectrometric analysis of exhaled particles. Anal. Chem. 2009;81:662–668. - PubMed
    1. Altamimi A., Ahmed A.E. Climate factors and incidence of Middle East respiratory syndrome coronavirus. J Infect Public Health. 2020;13:704–708. - PMC - PubMed