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Sublingual Immunotherapy as an Alternative to Induce Protection Against Acute Respiratory Infections
Published on: August 30, 2014
Airway Administration of Bacterial Lysate OM-85 Protects Mice Against Respiratory Syncytial Virus Infection
Krist Helen Antunes1, Gisele Cassão1, Leonardo Duarte Santos1
1Laboratory of Clinical and Experimental Immunology, School of Health and Life Science, Pontifical Catholic University of Rio Grande do Sul (PUCRS), Porto Alegre, Brazil.
Abstract:
Respiratory syncytial virus (RSV) is a seasonal pathogen responsible for the highest percentage of viral bronchiolitis in pediatric patients. There are currently no vaccine available and therapeutic methods to mitigate the severity of RSV bronchiolitis are limited. OM-85, an oral standardized bacterial lysate isolated from human respiratory strains and widely used to prevent recurrent infections and/or exacerbations in populations at risk, has been shown to be effective and safe in children and adults. Here, we demonstrate that airway administration of OM-85 in Balb/c mice prior to infection prevents RSV-induced disease, resulting in inhibition of viral replication associated with less perivascular and peribronchial inflammation in the lungs. These protective effects are dose and time-dependent with complete protection using 1mg dose of OM-85 only four times intranasally. Mechanistic insights using this topical route in the airways revealed increased alveolar macrophages, a selective set of tolerogenic DCs, Treg and Th1 expansion in the lung, even in the absence of infection, contributing to a better Th1/Th2 balance and preventing ILC2 recruitment in the airways and associated inflammatory sequelae. OM-85 preventive treatment also improved antiviral response by increasing IFNβ and its responsive genes in the lung. In vitro, OM-85 protects against RSV infection in a type I interferon pathway. Our animal model data suggest that intranasal use of OM-85 should be considered as a potential prophylactic product to prevent RSV bronchiolitis once human studies confirm these findings.
Insights
OM-85, a bacterial lysate, prevents respiratory syncytial virus (RSV) infection in mice by reducing inflammation and viral replication. Intranasal administration of OM-85 offers a potential prophylactic strategy for RSV bronchiolitis.
Area of Science:
- Immunology
- Virology
- Respiratory Medicine
Background:
- Respiratory syncytial virus (RSV) causes significant pediatric viral bronchiolitis.
- Current treatments for RSV bronchiolitis are limited, and no vaccine is available.
- OM-85, a bacterial lysate, is used to prevent respiratory infections in at-risk populations.
Purpose of the Study:
- To investigate the prophylactic efficacy of OM-85 against RSV-induced disease in a mouse model.
- To elucidate the immunological mechanisms underlying OM-85's protective effects.
- To evaluate the potential of intranasal OM-85 as a preventive measure for RSV bronchiolitis.
Main Methods:
- Balb/c mice were administered OM-85 intranasally before RSV infection.
- Viral replication, lung inflammation, immune cell populations (macrophages, DCs, Tregs, Th1, ILC2), and cytokine expression (IFNβ) were assessed.
- In vitro studies examined OM-85's effect on RSV infection via the type I interferon pathway.
Main Results:
- Airway administration of OM-85 prevented RSV-induced disease, inhibiting viral replication and reducing lung inflammation.
- Protective effects were dose- and time-dependent, with optimal results at 1mg dose.
- OM-85 modulated immune responses, increasing tolerogenic DCs, Tregs, Th1 cells, and IFNβ, while reducing ILC2 recruitment.
Conclusions:
- Intranasal OM-85 demonstrates prophylactic efficacy against RSV in a mouse model.
- OM-85 promotes a balanced immune response and enhances antiviral defenses.
- Further human studies are warranted to explore intranasal OM-85 as a preventive strategy for RSV bronchiolitis.

