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Impact of organic compounds on the stability of influenza A virus in deposited 1-μL droplets

Schaub, Aline; David, Shannon C; Glas, Irina; Klein, Liviana K; Violaki, Kalliopi; Terrettaz, Céline; Motos, Ghislain; Bluvshtein, Nir; Luo, Beiping; Pohl, Marie; Hugentobler, Walter; Nenes, Athanasios; Krieger, Ulrich K; Peter, Thomas; Stertz, Silke; Kohn, Tamar (2024). Impact of organic compounds on the stability of influenza A virus in deposited 1-μL droplets. mSphere, 9(9):e0041424.

Abstract

UNLABELLED

The composition of respiratory fluids influences the stability of viruses in exhaled aerosol particles and droplets, though the role of respiratory organics in modulating virus stability remains poorly understood. This study investigates the effect of organic compounds on the stability of influenza A virus (IAV) in deposited droplets. We compare the infectivity loss of IAV at different relative humidities (RHs) over the course of 1 h in 1-µL droplets consisting of phosphate-buffered saline (without organics), synthetic lung fluid, or nasal mucus (both containing organics). We show that IAV stability increases with increasing organic:salt ratios. Among the various organic species, proteins are identified as the most protective component, with smaller proteins stabilizing IAV more efficiently at the same mass concentration. Organics act by both increasing the efflorescence RH and shortening the drying period until efflorescence at a given RH. This research advances our mechanistic understanding of how organics stabilize exhaled viruses and thus influence their inactivation in respiratory droplets.

IMPORTANCE

This study investigates how the composition of respiratory fluids affects the stability of viruses in exhaled droplets. Understanding virus stability in droplets is important as it impacts how viruses spread and how we can combat them. We focus on influenza A virus (IAV) and investigate how different organic compounds found in lung fluid and nasal mucus protect the virus from inactivation. We demonstrate that the ratio of organics to salt in the fluid is an indicator of IAV stability. Among organics, small proteins are particularly effective at protecting IAV. Their effect is in part explained by the proteins' influence on the crystallization of salts in the droplets, thereby shielding the viruses from prolonged exposure to harmful salt concentrations. Understanding these mechanisms helps us grasp how viruses sustain their infectivity over time in respiratory droplets, contributing to efforts in controlling infectious diseases.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:04 Faculty of Medicine > Institute of Medical Virology
Dewey Decimal Classification:570 Life sciences; biology
610 Medicine & health
Scopus Subject Areas:Life Sciences > Microbiology
Life Sciences > Molecular Biology
Language:English
Date:25 September 2024
Deposited On:16 Jan 2025 11:11
Last Modified:30 Jun 2025 02:06
Publisher:American Society for Microbiology
ISSN:2379-5042
OA Status:Gold
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1128/msphere.00414-24
PubMed ID:39171937
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  • Language: English
  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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