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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
Airway epithelial NF-κB activation promotes Mycoplasma pneumoniae clearance in mice
Di Jiang1, Mark L Nelson, Fabienne Gally
1Department of Medicine, National Jewish Health and the University of Colorado Denver, Denver, Colorado, United States of America.
Background/Objective:
Respiratory infections including atypical bacteria Mycoplasma pneumoniae (Mp) contribute to the pathobiology of asthma and chronic obstructive pulmonary disease (COPD). Mp infection mainly targets airway epithelium and activates various signaling pathways such as nuclear factor κB (NF-κB). We have shown that short palate, lung, and nasal epithelium clone 1 (SPLUNC1) serves as a novel host defense protein and is up-regulated upon Mp infection through NF-κB activation in cultured human and mouse primary airway epithelial cells. However, the in vivo role of airway epithelial NF-κB activation in host defense against Mp infection has not been investigated. In the current study, we investigated the effects of in vivo airway epithelial NF-κB activation on lung Mp clearance and its association with airway epithelial SPLUNC1 expression.
Methodology/Main Results:
Non-antimicrobial tetracycline analog 9-t-butyl doxycycline (9-TB) was initially optimized in mouse primary tracheal epithelial cell culture, and then utilized to induce in vivo airway epithelial specific NF-κB activation in conditional NF-κB transgenic mice (CC10-(CA)IKKβ) with or without Mp infection. Lung Mp load and inflammation were evaluated, and airway epithelial SPLUNC1 protein was examined by immunohistochemistry. We found that 9-TB treatment in NF-κB transgene positive (Tg+), but not transgene negative (Tg-) mice significantly reduced lung Mp load. Moreover, 9-TB increased airway epithelial SPLUNC1 protein expression in NF-κB Tg+ mice.
Conclusion:
By using the non-antimicrobial 9-TB, our study demonstrates that in vivo airway epithelial NF-κB activation promotes lung bacterial clearance, which is accompanied by increased epithelial SPLUNC1 expression.
Insights
Activating airway epithelial nuclear factor κB (NF-κB) in vivo enhances lung bacterial clearance and increases expression of the host defense protein SPLUNC1, aiding in the fight against Mycoplasma pneumoniae infections.
Area of Science:
- Pulmonary Medicine
- Microbiology
- Immunology
Background:
- Respiratory infections, including Mycoplasma pneumoniae (Mp), contribute to asthma and COPD.
- Mp targets airway epithelium, activating signaling pathways like nuclear factor κB (NF-κB).
- Short palate, lung, and nasal epithelium clone 1 (SPLUNC1) is a host defense protein upregulated by Mp via NF-κB.
Purpose of the Study:
- Investigate the in vivo role of airway epithelial NF-κB activation in host defense against Mp infection.
- Determine the effect of NF-κB activation on lung Mp clearance.
- Examine the association between NF-κB activation and airway epithelial SPLUNC1 expression.
Main Methods:
- Used non-antimicrobial 9-t-butyl doxycycline (9-TB) to induce airway epithelial NF-κB activation in transgenic mice.
- Infected mice with Mp and evaluated lung bacterial load and inflammation.
- Assessed airway epithelial SPLUNC1 protein expression via immunohistochemistry.
Main Results:
- 9-TB treatment significantly reduced lung Mp load in NF-κB transgenic mice.
- 9-TB treatment increased airway epithelial SPLUNC1 protein expression in NF-κB transgenic mice.
- No significant effect observed in non-transgenic littermates.
Conclusions:
- In vivo airway epithelial NF-κB activation promotes lung bacterial clearance.
- This clearance is associated with increased epithelial SPLUNC1 expression.
- Non-antimicrobial 9-TB is a viable tool for studying this pathway.
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