Delayed antiviral immune response in alveolar type 2 cells increases susceptibility to influenza virus in alveoli
Xiao Shang, Zeyi Wang, Jiapei Yu, Ruiqi Zhang, Danlei Liu, Shumei Zou, Ka-Yi Leung, Ju Jia, Yujing Fan, Kwok-Hung Chan, Hui Li, Ivan Fan-Ngai Hung, Bin CaoAbstract
Background:
The alveolar sac, which serves as the primary site for gas exchange, comprises alveolar type 1 (AT1) and alveolar type 2 (AT2) cells. These epithelial cells initiate immune responses upon encountering external stimuli. However, the influenza virus infection patterns and antiviral responses exhibited by different types of alveolar epithelial cells remain understudied. This study aimed to investigate the differential susceptibility and antiviral responses of AT1 and AT2 cells during influenza virus infection.
Methods:
Immunofluorescence staining was performed to determine the spatial distribution of influenza A virus (IAV; H1N1). Primary murine epithelial
Results:
Mouse AT2 cells exhibited greater susceptibility to H1N1 than did AT1 cells. The
Conclusion:
Our findings indicate the localization of IAV in alveoli and highlight the vulnerability of AT2 cells, which exhibit delayed immune responses, resulting in increased viral replication.