Related Experiment Video
Updated: May 12, 2026

Co-immunoprecipitation of the Mouse Mx1 Protein with the Influenza A Virus Nucleoprotein
Published on: April 21, 2015
Nox1 oxidase suppresses influenza a virus-induced lung inflammation and oxidative stress
Stavros Selemidis1, Huei Jiunn Seow, Brad R S Broughton
1Department of Pharmacology, Monash University, Clayton, Victoria, Australia.
Abstract:
Influenza A virus infection is an ongoing clinical problem and thus, there is an urgent need to understand the mechanisms that regulate the lung inflammation in order to unravel novel generic pharmacological strategies. Evidence indicates that the Nox2-containing NADPH oxidase enzyme promotes influenza A virus-induced lung oxidative stress, inflammation and dysfunction via ROS generation. In addition, lung epithelial and endothelial cells express the Nox1 isoform of NADPH oxidase, placing this enzyme at key sites to regulate influenza A virus-induced lung inflammation. The aim of this study was to investigate whether Nox1 oxidase regulates the inflammatory response and the oxidative stress to influenza infection in vivo in mice. Male WT and Nox1-deficient (Nox1(-/y)) mice were infected with the moderately pathogenic HkX-31 (H3N2, 1×10(4) PFU) influenza A virus for analysis of bodyweight, airways inflammation, oxidative stress, viral titre, lung histopathology, and cytokine/chemokine expression at 3 and 7 days post infection. HkX-31 virus infection of Nox1(-/y) mice resulted in significantly greater: loss of bodyweight (Day 3); BALF neutrophilia, peri-bronchial, peri-vascular and alveolar inflammation; Nox2-dependent inflammatory cell ROS production and peri-bronchial, epithelial and endothelial oxidative stress. The expression of pro-inflammatory cytokines including CCL2, CCL3, CXCL2, IL-1β, IL-6, GM-CSF and TNF-α was higher in Nox1(-/y) lungs compared to WT mice at Day 3, however, the expression of CCL2, CCL3, CXCL2, IFN-γ and the anti-inflammatory cytokine IL-10 were lower in lungs of Nox1(-/y) mice vs. WT mice at Day 7. Lung viral titre, and airways infiltration of active CD8(+) and CD4(+) T lymphocytes, and of Tregs were similar between WT and Nox1(-/y) mice. In conclusion, Nox1 oxidase suppresses influenza A virus induced lung inflammation and oxidative stress in mice particularly at the early phases of the infection. Nox1 and Nox2 oxidases appear to have opposing roles in the regulation of inflammation caused by influenza A viruses.
Insights
Nox1 oxidase suppresses lung inflammation and oxidative stress during influenza A virus infection in mice. Nox1 and Nox2 enzymes play opposing roles in regulating this viral-induced inflammation.
Area of Science:
- Immunology
- Molecular Biology
- Pathology
Background:
- Influenza A virus infection causes significant lung inflammation and oxidative stress.
- NADPH oxidase enzymes, including Nox1 and Nox2, are implicated in regulating inflammatory responses.
- Understanding the specific roles of Nox1 and Nox2 in influenza infection is crucial for developing new therapeutic strategies.
Purpose of the Study:
- To investigate the role of Nox1 oxidase in regulating the inflammatory response and oxidative stress during influenza A virus infection in vivo.
- To compare the effects of influenza infection in wild-type (WT) mice versus Nox1-deficient (Nox1(-/y)) mice.
Main Methods:
- Male WT and Nox1(-/y) mice were infected with the HkX-31 influenza A virus.
- Analysis included body weight, bronchoalveolar lavage fluid (BALF) cell counts, lung histopathology, oxidative stress markers, viral titers, and cytokine/chemokine expression at 3 and 7 days post-infection.
Main Results:
- Nox1(-/y) mice exhibited greater body weight loss, neutrophilia, and inflammation in lung tissues compared to WT mice.
- Nox1 deficiency led to increased Nox2-dependent reactive oxygen species (ROS) production and oxidative stress in lung cells.
- Differential expression of pro-inflammatory and anti-inflammatory cytokines was observed between Nox1(-/y) and WT mice at different time points.
Conclusions:
- Nox1 oxidase plays a suppressive role in influenza A virus-induced lung inflammation and oxidative stress, particularly in the early stages of infection.
- Nox1 and Nox2 oxidases appear to have opposing functions in the regulation of inflammation caused by influenza A viruses.
More Related Videos
09:31Analyzing Oxidative Stress in Murine Intestinal Organoids using Reactive Oxygen Species-Sensitive Fluorogenic Probe
Published on: September 17, 2021
09:07Using Zebrafish Models of Human Influenza A Virus Infections to Screen Antiviral Drugs and Characterize Host Immune Cell Responses
Published on: January 20, 2017