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The Utilization of Oropharyngeal Intratracheal PAMP Administration and Bronchoalveolar Lavage to Evaluate the Host Immune Response in Mice
Published on: April 2, 2014
Orally administered Lactobacillus rhamnosus modulates the respiratory immune response triggered by the viral
Julio Villena1, Eriko Chiba, Yohsuke Tomosada
1Laboratory of Clinical and Experimental Biochemistry, Reference Centre for Lactobacilli (CERELA-CONICET), Tucuman, Argentina. jcvillena@cerela.org.ar
Background:
Some studies have shown that probiotics, including Lactobacillus rhamnosus CRL1505, had the potential to beneficially modulate the outcome of certain bacterial and viral respiratory infections. However, these studies did not determine the mechanism(s) by which probiotics contribute to host defense against respiratory viruses.
Results:
In this work we demonstrated that orally administered Lactobacillus rhamnosus CRL1505 (Lr1505) was able to increase the levels of IFN-γ, IL-10 and IL-6 in the respiratory tract and the number of lung CD3(+)CD4(+)IFN-γ(+) T cells. To mimic the pro-inflammatory and physiopathological consecuences of RNA viral infections in the lung, we used an experimental model of lung inflammation based on the administration of the artificial viral pathogen-associated molecular pattern poly(I:C). Nasal administration of poly(I:C) to mice induced a marked impairment of lung function that was accompanied by the production of pro-inflammatory mediators and inflammatory cell recruitment into the airways. The preventive administration of Lr1505 reduced lung injuries and the production of TNF-α, IL-6, IL-8 and MCP-1 in the respiratory tract after the challenge with poly(I:C). Moreover, Lr1505 induced a significant increase in lung and serum IL-10. We also observed that Lr1505 was able to increase respiratory IFN-γ levels and the number of lung CD3(+)CD4(+)IFN-γ(+) T cells after poly(I:C) challenge. Moreover, higher numbers of both CD103(+) and CD11b(high) dendritic cells and increased expression of MHC-II, IL-12 and IFN-γ in these cell populations were found in lungs of Lr1505-treated mice. Therefore, Lr1505 treatment would beneficially regulate the balance between pro-inflammatory mediators and IL-10, allowing an effective inflammatory response against infection and avoiding tissue damage.
Conclusions:
Results showed that Lr1505 would induce a mobilization of cells from intestine and changes in cytokine profile that would be able to beneficially modulate the respiratory mucosal immunity. Although deeper studies are needed using challenges with respiratory viruses, the results in this study suggest that Lr1505, a potent inducer of antiviral cytokines, may be useful as a prophylactic agent to control respiratory virus infection.
Insights
Lactobacillus rhamnosus CRL1505 (Lr1505) boosts respiratory immunity by increasing antiviral cytokines and immune cells. This probiotic may serve as a prophylactic agent against respiratory viral infections, reducing lung damage and inflammation.
Area of Science:
- Immunology
- Microbiology
- Probiotics Research
Background:
- Probiotics, including Lactobacillus rhamnosus CRL1505 (Lr1505), may positively influence respiratory infections.
- Mechanisms by which probiotics enhance host defense against respiratory viruses remain unclear.
Purpose of the Study:
- To investigate the immunomodulatory effects of Lr1505 in the respiratory tract.
- To elucidate the role of Lr1505 in host defense against viral-induced lung inflammation.
Main Methods:
- Oral administration of Lr1505 to mice.
- Induction of lung inflammation using poly(I:C) as a viral mimic.
- Analysis of immune cell populations (T cells, dendritic cells) and cytokine profiles (IFN-γ, IL-10, IL-6, TNF-α) in respiratory tissues and serum.
Main Results:
- Lr1505 increased respiratory levels of IFN-γ, IL-10, and IL-6, and lung CD3(+)CD4(+)IFN-γ(+) T cells.
- Preventive Lr1505 administration reduced poly(I:C)-induced lung injury and pro-inflammatory mediators (TNF-α, IL-6, IL-8, MCP-1).
- Lr1505 enhanced lung and serum IL-10, increased respiratory IFN-γ, and modulated dendritic cell populations and function.
Conclusions:
- Lr1505 modulates respiratory mucosal immunity through immune cell mobilization and altered cytokine profiles.
- Lr1505 acts as a potent inducer of antiviral cytokines.
- Lr1505 shows potential as a prophylactic agent for managing respiratory viral infections.
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