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An IL-8 Transiently Transgenized Mouse Model for the In Vivo Long-term Monitoring of Inflammatory Responses
Published on: July 7, 2017
Flt3-ligand plasmid prevents the development of pathophysiological features of chronic asthma in a mouse model
Jehad H Edwan1, Devendra K Agrawal
1Department of Biomedical Sciences, Medical Microbiology & Immunology, Creighton University School of Medicine, Omaha, NE 68178, USA.
Abstract:
Airway inflammation and remodeling are primary characteristics of long-standing asthma. A balance between the T(H)1/T(H)2 cytokines regulates the accumulation and activation of inflammatory cells, including mast cells and eosinophils. Recently, we demonstrated that pUMVC3-hFLex, an active plasmid, mammalian expression vector for the secretion of Flt3-L, reversed established airway hyperresponsiveness (AHR) in a murine model of acute allergic airway inflammation. The present experiments were undertaken to examine the effect of pUMVC3-hFLex in a chronic model of allergic airway inflammation that was established in Balb/c mice by sensitization and challenge with ovalbumin (OVA). pUMVC3-hFLex or the control plasmid, pUMVC3, were administered by injection into the muscle interior tibialis. Treatment with pUMVC3-hFLex completely reversed established AHR (p < 0.05), and this effect continued even after several exposures to the allergen (p < 0.05). pUMVC3-hFLex treatment prevented the development of goblet cell hyperplasia and subepithelial fibrosis, and significantly reduced serum levels of IL-4 and IL-5, and increased serum IL-10 levels (p < 0.05) with no effect on serum IL-13. Serum IgE or serum total and anti-OVA IgG1 and IgG2a levels did not change. Total BALF cellularity and BALF IL-5 levels were reduced (p < 0.05), but there was no significant effect on BALF IL-10 and IL-13. These results suggest that pUMVC3-hFLex treatment can prevent the development of airway remodeling and maintain airway protection in chronic experimental asthma model, and might provide a novel approach for treating chronic asthma.
Insights
pUMVC3-hFLex plasmid reversed airway hyperresponsiveness and prevented airway remodeling in a chronic asthma model. This novel treatment offers potential for managing chronic asthma by restoring airway protection.
Area of Science:
- Immunology
- Pulmonology
- Molecular Biology
Background:
- Asthma is characterized by airway inflammation and remodeling.
- T(H)1/T(H)2 cytokine balance influences inflammatory cell accumulation.
- Previous studies showed pUMVC3-hFLex reversed acute allergic airway inflammation.
Purpose of the Study:
- To investigate the efficacy of pUMVC3-hFLex in a chronic allergic airway inflammation model.
- To assess its impact on airway hyperresponsiveness and remodeling.
- To evaluate its effects on cytokine profiles and immune markers.
Main Methods:
- Established chronic allergic airway inflammation in Balb/c mice using ovalbumin (OVA).
- Administered pUMVC3-hFLex or control plasmid via intramuscular injection.
- Assessed airway hyperresponsiveness (AHR), goblet cell hyperplasia, subepithelial fibrosis, and serum/BALF cytokine levels.
Main Results:
- pUMVC3-hFLex completely reversed established AHR, with sustained effects.
- Prevented goblet cell hyperplasia and subepithelial fibrosis.
- Reduced serum IL-4 and IL-5, increased IL-10; reduced BALF IL-5 levels.
Conclusions:
- pUMVC3-hFLex prevents airway remodeling and maintains airway protection in chronic experimental asthma.
- Suggests a novel therapeutic approach for chronic asthma treatment.
- Demonstrates potential for long-term airway protection in asthma models.
