Divergent macrophage induced lung pathology occurs between infants and adults during respiratory viral infection
Verhoeven, D.; Verhoeven, D.
Show abstract
Young children, especially those aged 4 months to 2 years of age, frequently exhibit severe morbidity during respiratory viral infections. For influenza infections, macrophages/monocytes serve as front line defenses against early viral replication in the lungs until the adaptive immune system arrives to clear virus. However, infiltrating inflammatory monocytes are a significant cause of influenza induced lung pathology/morbidity. We utilized a young murine model of respiratory viral infections using 21-day-old mice to investigate the mechanisms driving the heightened influenza induced morbidity observed in human young children. We hypothesized that macrophages/monocytes responses to influenza would diverge between young and older mice despite our evidence that macrophages from both groups appear to control viral replication at similar rates. While inflammatory monocyte infiltration contributed to influenza induced morbidity/lung inflammation in adults, they did not appear to contribute to morbidity in young mice. Instead, young mice appeared to develop lung inflammation through a lack of interferon gamma (IFN{psi}) and infection of macrophage populations. In contrast, adult mice controlled early viral replication through macrophage populations (alveolar, interstitial, and inflammatory) and inflammatory monocytes. While intrinsic limitations in anti-viral cytokine responses, especially IFN{psi}, characterized the macrophage response to viral infection in young mice, the innate immune response to infection appears diminished compared to adults. This study highlights the intrinsic limitations in macrophage effector functions that may arise in young children but that also contribute to disease pathology.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Toll-like receptor 7 (TLR7)-mediated antiviral response protects mice from lethal SARS-CoV-2 infection 96%
- Interferon-induced Protein-44 and Interferon-induced Protein 44-like restrict replication of Respiratory Syncytial Virus 96%
- Suppression of Cytotoxic T Cell Functions and Decreased Levels of Tissue Resident Memory T cell During H5N1 infection 96%
Similar papers in this journal
- A porcine ex vivo lung perfusion model to investigate bacterial pathogenesis 95%
- Sex differences in lung imaging and SARS-CoV-2 antibody responses in a COVID-19 golden Syrian hamster model 95%
- Comparison of SARS-CoV-2 variants of concern in primary human nasal cultures demonstrates Delta as most cytopathic and Omicron as fastest replicating 94%
Similar papers in this journal
- Complement Decay-Accelerating Factor is a modulator of influenza A virus lung immunopathology 95%
- HIV Impairs And Exploits Pulmonary Th17 And Th22 Cell-Mediated Immune Responses To Mycobacterium Tuberculosis 95%
- Mouse models of COVID-19 recapitulate inflammatory pathways rather than gene expression 95%
Similar papers in this journal
- Enhanced efficacy of vaccination with vaccinia virus in old versus young mice 94%
- Restoration of Type 17 immune signaling is not sufficient for protection during influenza-associated pulmonary aspergillosis 94%
- IFI27 transcription is an early predictor for COVID-19 outcomes; a multi-cohort observational study 93%
Similar papers in this journal
- Distinct upper airway epithelium interferon-stimulated and profibrotic gene expression between adult and infant rhesus macaques infected with SARS-CoV-2 95%
- Lack of pathogenic involvement of CCL4 and its receptor CCR5 in arthritogenic alphavirus disease 94%
- Mouse Memory CD8 T cell subsets defined by Tissue Resident Memory (TRM) Integrin Expression Exhibit Distinct Metabolic Profiles 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.