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Modeling Dysplastic and Functional Lung Alveolar Repair after Influenza Infection
Published on: September 19, 2025
Virus-induced airway dysfunction: pathogenesis and biomechanisms
Azzeddine Dakhama1, Young Mok Lee, Erwin W Gelfand
1Division of Cell Biology, Department of Pediatrics, National Jewish Medical and Research Center, Denver, CO, USA. dakhamaa@njc.org
Insights
Respiratory syncytial virus (RSV) infections in infants may cause asthma. Animal models show RSV alters airway function and enhances asthma-like symptoms, suggesting a causal link needing further study.
Area of Science:
- Pediatric respiratory infections
- Immunology of viral diseases
- Asthma pathogenesis
Background:
- Viral respiratory infections contribute to significant illness and death.
- Respiratory viruses are implicated in early-life asthma development.
- Respiratory syncytial virus (RSV) is a common cause of infant bronchiolitis, linked to childhood wheezing and asthma.
Purpose of the Study:
- To investigate the role of viral respiratory infections, particularly RSV, in the development of asthma.
- To explore the mechanisms of virus-induced airway dysfunction using animal models.
Main Methods:
- Utilized animal models to study viral respiratory infection pathophysiology.
- Assessed airway inflammation and function to understand virus-induced dysfunction.
- Examined the impact of neonatal RSV infection on asthma-like phenotypes in mice.
Main Results:
- Viral lower respiratory tract infections alter airway function in humans and animals.
- Animal studies show viral infections induce airway hyperresponsiveness, especially in sensitized hosts.
- Neonatal RSV infection in mice leads to an asthma-like phenotype upon reinfection.
Conclusions:
- Mechanisms of viral respiratory infections in chronic airway diseases like asthma require further elucidation.
- Animal models provide valuable insights into RSV's role in post-bronchiolitis wheezing and asthma.
- Therapeutic studies are underway to mitigate the impact of these viral infections.
Background:
Viral respiratory tract infections cause significant morbidity and mortality. Respiratory viruses are suspected to play a role in the inception of asthma early in life. Respiratory syncytial virus (RSV) is the most common cause of infant bronchiolitis, which is associated with the development of childhood wheezing and asthma. However, it is not clear whether this association is "causal" or "circumstantial."
Methods:
Animal models have been pivotal in studying the pathophysiology of viral respiratory infections. Various approaches to assessing airway inflammation and function have been used to define the mechanisms of virus-induced airway dysfunction and to address clinically relevant questions regarding the role of RSV in wheezing and asthma after bronchiolitis.
Results:
Viral lower respiratory tract infections alter airway function in humans and animals. The extent and duration of the alterations may depend on the virus itself, host factors and environmental factors. Animal studies demonstrated that viral infection induces airway hyperresponsiveness and enhances this alteration in the allergen-sensitized and exposed host. This altered airway function is mediated by immune and neurogenic inflammatory mechanisms. Recent studies in mice show that neonatal RSV infection sensitizes the newborn to develop an asthma-like phenotype on reinfection, providing further opportunities to investigate the role of RSV in postbronchiolitis wheezing and asthma in this animal model.
Conclusions:
Further studies are needed to fully establish the mechanisms underlying the pathophysiology of viral respiratory tract infections and to clarify their role in the inception and/or progression of chronic airway diseases such as asthma. The results of ongoing therapeutic studies promise to minimize the impact of such viral infections.
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