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Murine Model of Allergen Induced Asthma
Published on: May 14, 2012
Exposure to mycotoxins increases the allergic immune response in a murine asthma model
Nicole Schütze1, Irina Lehmann, Ulrike Bönisch
1UFZ - Helmholtz Centre for Environmental Research Leipzig-Halle, Department of Environmental Immunology, Leipzig, Germany.
Rationale:
Epidemiological studies have shown that indoor molds are associated with increased prevalence and exacerbation of respiratory symptoms and asthma. Mycotoxins, secondary metabolites of molds, may contribute to these effects.
Objectives:
To investigate the adjuvant activity of mycotoxins on allergic airway inflammation.
Methods:
Balb/c mice were exposed via the airways to gliotoxin and via the intestine to patulin, sensitized with ovalbumin (OVA), and then analyzed in acute and chronic murine asthma models. In addition, the effect of mycotoxin exposure on dendritic cell (DC) function was investigated using murine bone marrow-derived DCs.
Measurements And Main Results:
Exposure of mice to both mycotoxins enhanced dose-dependently airway hyperreactivity, eosinophilic lung inflammation, and OVA-specific IgE serum levels compared with mice that received only the antigen. These findings correlated with increased Th2 cytokine levels and decreased IFN-gamma production. Long-term mycotoxin exposure exacerbated chronic airway inflammation and airway remodeling. In vitro or in vivo mycotoxin exposure inhibited IL-12 production in maturing DCs and enhanced airway inflammation after adoptive DC transfer into Balb/c mice. Mycotoxin exposure enhanced OVA-induced lung lipid peroxidation and moderately increased isoprostane levels in naive mice. Treatment of mycotoxin-exposed DCs with the antioxidants N-acetylcysteine or glutathione ethyl ester restored IL-12 secretion and pretreatment of exposed mice with N-acetylcysteine prevented the mycotoxin-induced increase of airway inflammation and AHR.
Conclusions:
Our results demonstrate that gliotoxin and patulin increase the allergic immune response in mice by modulating the Th1/Th2 balance via direct effects on IL-12 secretion in DCs and by inducing oxidative stress.
Insights
Mycotoxins like gliotoxin and patulin worsen allergic airway inflammation in mice by disrupting immune balance and causing oxidative stress. Antioxidant treatment can mitigate these harmful effects on asthma models.
Area of Science:
- Immunology
- Environmental Health
- Toxicology
Background:
- Indoor molds are linked to respiratory issues and asthma exacerbation.
- Mycotoxins, mold metabolites, are potential contributors to these adverse health effects.
Purpose of the Study:
- To investigate the role of mycotoxins (gliotoxin and patulin) as adjuvants in allergic airway inflammation.
- To explore the impact of mycotoxins on dendritic cell (DC) function in the context of asthma.
Main Methods:
- Balb/c mice were exposed to gliotoxin and patulin, then sensitized with ovalbumin (OVA) to model asthma.
- Dendritic cell function was assessed through in vitro and in vivo mycotoxin exposure experiments.
- Oxidative stress markers, including lipid peroxidation and isoprostane levels, were measured.
Main Results:
- Mycotoxin exposure dose-dependently increased airway hyperreactivity, eosinophilic inflammation, and OVA-specific IgE.
- Th2 cytokine levels rose, while IFN-gamma decreased, indicating a Th1/Th2 imbalance.
- Mycotoxins inhibited IL-12 production in DCs, promoted oxidative stress, and exacerbated chronic airway inflammation and remodeling. Antioxidant treatment reversed these effects.
Conclusions:
- Gliotoxin and patulin act as adjuvants, enhancing allergic immune responses in mice.
- Mycotoxins modulate the Th1/Th2 balance through effects on DC IL-12 secretion and induction of oxidative stress.
- Antioxidant interventions show potential in preventing mycotoxin-induced airway inflammation.
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