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Published on: February 28, 2021
Nonpharmaceutical interventions for COVID-19 disrupt the dynamic balance between influenza A virus and human immunity
Qing Ye1, Huihui Liu2, Jianhua Mao2
1Department of Clinical Laboratory, The Children's Hospital, Zhejiang University School of Medicine, National Clinical Research Center for Child Health, National Children's Regional Medical Center, Hangzhou, China.
Insights
Nonpharmaceutical interventions (NPIs) during COVID-19 impacted influenza A virus (IAV) evolution. A 2022 outbreak showed H3N2 dominance in children over 3, with genetic changes potentially affecting immunity.
Area of Science:
- Virology
- Epidemiology
- Immunology
Background:
- Nonpharmaceutical interventions (NPIs) implemented during the COVID-19 pandemic altered respiratory disease transmission dynamics.
- The long-term effects of NPIs on the evolution and transmission of influenza A virus (IAV) and human immunity remain incompletely understood.
Purpose of the Study:
- To investigate the impact of NPIs on influenza A virus (IAV) outbreaks.
- To characterize the genetic features of influenza A (H3N2) viruses during a recent outbreak in children.
Main Methods:
- Retrospective analysis of children with respiratory tract infections from January 2019 to July 2022.
- Detection of IAV using a direct immunofluorescence assay kit.
- Virus isolation and Sanger sequencing for genetic analysis of influenza A (H3N2) strains.
Main Results:
- A rapid increase in IAV infection rates was observed from June to July 2022 in Hangzhou, China (30.41% positive).
- Children over 3 years old were the primary demographic affected (75% of cases), with Influenza A (H3N2) being the predominant strain.
- Isolated H3N2 viruses showed high homology to A/South_Dakota/22/2022, with specific mutations identified in the HA gene (e.g., S156H, N159Y).
- No significant variations were found in key amino acid sites related to neuraminidase inhibitor resistance.
Conclusions:
- Long-term NPIs have significantly influenced influenza virus evolution, transmission, and human immunity.
- The observed genetic changes in H3N2 viruses may indicate an altered host-virus dynamic.
- Further research is needed to fully comprehend the implications of NPIs on influenza epidemiology and population immunity.
Abstract:
During the COVID-19 epidemic, nonpharmaceutical interventions (NPIs) blocked the transmission route of respiratory diseases. This study aimed to investigate the impact of NPIs on the influenza A virus (IAV) outbreak. The present study enrolled all children with respiratory tract infections who came to the Children's Hospital of Zhejiang University between January 2019 and July 2022. A direct immunofluorescence assay kit detected IAV. Virus isolation and Sanger sequencing were performed. From June to July 2022, in Hangzhou, China, the positive rate of IAV infection in children has increased rapidly, reaching 30.41%, and children over 3 years old are the main infected population, accounting for 75% of the total number of infected children. Influenza A (H3N2) viruses are representative strains during this period. In this outbreak, H3N2 was isolated from a cluster of its own and is highly homologous with A/South_Dakota/22/2022 (2021-2022 Northern Hemisphere). Between isolated influenza A (H3N2) viruses and A/South_Dakota/22/2022, the nucleotide homology of the HA gene ranged from 97.3% to 97.5%; the amino acid homology was 97%-97.2%, and the genetic distance of nucleotides ranged from 0.05 to 0.052. Compared with A/South_Dakota/22/2022, the isolated H3N2 showed S156H, N159Y, I160T, D186S, S198P, I48T, S53D, and K171N mutations. There was no variation in 13 key amino acid sites associated with neuraminidase inhibitor resistance in NA protein. Long-term NPIs have significantly affected the evolution and transmission of the influenza virus and human immunity, breaking the dynamic balance between the IAV and human immunity.
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