Inactivation mechanisms of influenza A virus under pH conditions encountered in aerosol particles as revealed by whole-virus HDX-MS
Errata
- Due to a labeling error upon receipt of the influenza A virus strain, this study was conducted under the assumption that it was A/WSN/33. During recent sequencing in an unrelated project, it has come to light that the strain used in this study was in fact A/Puerto Rico/8/34 (typically abbreviated A/PR8). [...]
- DOI : 10.1128/msphere.00595-24
- PMID : 39297687
ContributorsDavid, Shannon C
; Vadas, Oscar
; Glas, Irina
; Schaub, Aline; Luo, Beiping; D'angelo, Giovanni; Montoya, Jonathan Paz; Bluvshtein, Nir; Hugentobler, Walter; Klein, Liviana K; Motos, Ghislain; Pohl, Marie; Violaki, Kalliopi
; Nenes, Athanasios; Krieger, Ulrich K; Stertz, Silke
; Peter, Thomas; Kohn, Tamar
Published inMSphere, vol. 8, no. 5, e00226-23
Publication date2023-10-24
First online date2023-08-18
Abstract
Keywords
- HDX-MS
- Aerosols
- Haemagglutinin
- Influenza A virus
- Matrix 1
- Humans
- Influenza A virus / physiology
- Influenza, Human
- Respiratory Aerosols and Droplets
- Hydrogen-Ion Concentration
Affiliation entities
Research groups
Citation (ISO format)
DAVID, Shannon C et al. Inactivation mechanisms of influenza A virus under pH conditions encountered in aerosol particles as revealed by whole-virus HDX-MS. In: MSphere, 2023, vol. 8, n° 5, p. e00226–23. doi: 10.1128/msphere.00226-23
Main files (1)
Article (Published version)
Secondary files (4)
Updates (1)
Erratum
Identifiers
- PID : unige:194458
- DOI : 10.1128/msphere.00226-23
- PMID : 37594288
- PMCID : PMC10597348
Journal ISSN2379-5042
