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Updated: Jul 16, 2026

Murine Model of Allergen Induced Asthma
Published on: May 14, 2012
Catalase overexpression fails to attenuate allergic airways disease in the mouse
Niki L Reynaert1, Scott W Aesif, Toby McGovern
1Department of Pathology, University of Vermont, Burlington, VT 05405, USA.
Abstract:
Oxidative stress is a hallmark of asthma, and increased levels of oxidants are considered markers of the inflammatory process. Most studies to date addressing the role of oxidants in the etiology of asthma were based on the therapeutic administration of low m.w. antioxidants or antioxidant mimetic compounds. To directly address the function of endogenous hydrogen peroxide in the pathophysiology of allergic airway disease, we comparatively evaluated mice systemically overexpressing catalase, a major antioxidant enzyme that detoxifies hydrogen peroxide, and C57BL/6 strain matched controls in the OVA model of allergic airways disease. Catalase transgenic mice had 8-fold increases in catalase activity in lung tissue, and had lowered DCF oxidation in tracheal epithelial cells, compared with C57BL/6 controls. Despite these differences, both strains showed similar increases in OVA-specific IgE, IgG1, and IgG2a levels, comparable airway and tissue inflammation, and identical increases in procollagen 1 mRNA expression, following sensitization and challenge with OVA. Unexpectedly, mRNA expression of MUC5AC and CLCA3 genes were enhanced in catalase transgenic mice, compared with C57BL/6 mice subjected to Ag. Furthermore, when compared with control mice, catalase overexpression increased airway hyperresponsiveness to methacholine both in naive mice as well as in response to Ag. In contrast to the prevailing notion that hydrogen peroxide is positively associated with the etiology of allergic airways disease, the current findings suggest that endogenous hydrogen peroxide serves a role in suppressing both mucus production and airway hyperresponsiveness.
Insights
This study investigated hydrogen peroxide's role in asthma. Unexpectedly, higher catalase activity, which breaks down hydrogen peroxide, worsened airway hyperresponsiveness and mucus production in mice.
Area of Science:
- Allergy and immunology
- Respiratory medicine
- Biochemistry
Background:
- Oxidative stress and increased oxidants are key features of asthma.
- Previous research focused on external antioxidant administration.
- The role of endogenous hydrogen peroxide in allergic airway disease remains unclear.
Purpose of the Study:
- To investigate the direct function of endogenous hydrogen peroxide in allergic airway disease.
- To compare the effects of catalase overexpression on asthma pathology in mice.
Main Methods:
- Systemically overexpressed catalase in transgenic mice.
- Utilized the ovalbumin (OVA) model of allergic airways disease.
- Compared transgenic mice with C57BL/6 control mice.
Main Results:
- Catalase transgenic mice showed significantly increased catalase activity and reduced oxidative stress markers.
- Despite this, both groups exhibited similar allergic responses (IgE, inflammation, procollagen mRNA).
- Catalase overexpression unexpectedly enhanced MUC5AC and CLCA3 gene expression, increased airway hyperresponsiveness, and worsened asthma symptoms.
Conclusions:
- Endogenous hydrogen peroxide may suppress mucus production and airway hyperresponsiveness, contrary to previous assumptions.
- Targeting hydrogen peroxide pathways requires careful consideration due to potential adverse effects on mucus and airway function.

