Role of bioaerosol in virus transmission and material‐based countermeasures

Abstract Respiratory pathogens transmit primarily through particles such as droplets and aerosols. Although often overlooked, the resuspension of settled droplets is also a key facilitator of disease transmission. In this review, we discuss the three main mechanisms of aerosol generation: direct gen...

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Bibliographic Details
Main Authors: John Joseph, Helna Mary Baby, Spencer Zhao, Xiang‐Ling Li, Krisco‐Cheuk Cheung, Kabir Swain, Eli Agus, Sruthi Ranganathan, Jingjing Gao, James N Luo, Nitin Joshi
Format: Article
Language:English
Published: Wiley 2022-12-01
Series:Exploration
Subjects:
Online Access:https://doi.org/10.1002/EXP.20210038
Description
Summary:Abstract Respiratory pathogens transmit primarily through particles such as droplets and aerosols. Although often overlooked, the resuspension of settled droplets is also a key facilitator of disease transmission. In this review, we discuss the three main mechanisms of aerosol generation: direct generation such as coughing and sneezing, indirect generation such as medical procedures, and resuspension of settled droplets and aerosols. The size of particles and environmental factors influence their airborne lifetime and ability to cause infection. Specifically, humidity and temperature are key factors controlling the evaporation of suspended droplets, consequently affecting the duration in which particles remain airborne. We also suggest material‐based approaches for effective prevention of disease transmission. These approaches include electrostatically charged virucidal agents and surface coatings, which have been shown to be highly effective in deactivating and reducing resuspension of pathogen‐laden aerosols.
ISSN:2766-8509
2766-2098