Immune Modulation to Improve Survival of Viral Pneumonia in Mice
Shradha Wali1,2, Jose R Flores2, Ana M Jaramillo2
1UTHealth Graduate School of Biomedical Sciences and.
Abstract:
Viral pneumonias remain global health threats, as exemplified in the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) pandemic, requiring novel treatment strategies both early and late in the disease process. We have reported that mice treated before or soon after infection with a combination of inhaled Toll-like receptor (TLR) 2/6 and 9 agonists (Pam2-ODN) are broadly protected against microbial pathogens including respiratory viruses, but the mechanisms remain incompletely understood. The objective of this study was to validate strategies for immune modulation in a preclinical model of viral pneumonia and determine their mechanisms. Mice were challenged with the Sendai paramyxovirus in the presence or absence of Pam2-ODN treatment. Virus burden and host immune responses were assessed to elucidate Pam2-ODN mechanisms of action and to identify additional opportunities for therapeutic intervention. Enhanced survival of Sendai virus pneumonia with Pam2-ODN treatment was associated with reductions in lung virus burden and with virus inactivation before internalization. We noted that mortality in sham-treated mice corresponded with CD8+ T-cell lung inflammation on days 11-12 after virus challenge, after the viral burden had declined. Pam2-ODN blocked this injurious inflammation by minimizing virus burden. As an alternative intervention, depleting CD8+ T cells 8 days after viral challenge also decreased mortality. Stimulation of local innate immunity within the lungs by TLR agonists early in disease or suppression of adaptive immunity by systemic CD8+ T-cell depletion late in disease improves outcomes of viral pneumonia in mice. These data reveal opportunities for targeted immunomodulation to protect susceptible human subjects.
Insights
Early immune stimulation with Toll-like receptor (TLR) agonists or late suppression of CD8+ T cells improved outcomes in a mouse model of viral pneumonia. These findings offer new therapeutic strategies for respiratory viral infections.
Area of Science:
- Immunology
- Virology
- Preclinical Research
Background:
- Viral pneumonias, including those caused by SARS-CoV-2, pose significant global health challenges.
- Existing treatments require novel strategies for both early and late stages of disease.
- Toll-like receptor (TLR) agonists like Pam2-ODN have shown broad protection against pathogens, but mechanisms are unclear.
Purpose of the Study:
- To validate immune modulation strategies in a preclinical viral pneumonia model.
- To elucidate the mechanisms of action for Pam2-ODN treatment.
- To identify therapeutic intervention opportunities for viral pneumonia.
Main Methods:
- Mice were challenged with Sendai paramyxovirus.
- Treatment groups received inhaled TLR 2/6 and 9 agonists (Pam2-ODN) or sham treatment.
- Virus burden, host immune responses, and survival rates were assessed.
Main Results:
- Pam2-ODN treatment enhanced survival by reducing lung virus burden and inactivating the virus before internalization.
- Mortality in control mice correlated with CD8+ T-cell lung inflammation after viral clearance.
- Depleting CD8+ T cells late in the disease also decreased mortality.
Conclusions:
- Early stimulation of innate immunity via TLR agonists or late suppression of adaptive immunity (CD8+ T cells) improves outcomes in viral pneumonia.
- Pam2-ODN mitigates injurious inflammation by controlling viral load.
- These findings suggest targeted immunomodulation strategies for protecting humans against viral respiratory infections.


