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Updated: Jun 2, 2026

Experimental Model to Evaluate Resolution of Pneumonia
Published on: February 17, 2023
SPLUNC1 promotes lung innate defense against Mycoplasma pneumoniae infection in mice
Fabienne Gally1, Y Peter Di, Sean K Smith
1Department of Medicine, National Jewish Health, Denver, Colorado, USA.
Abstract:
Short palate, lung, and nasal epithelium clone 1 (SPLUNC1) protein is highly expressed in normal airways, but is dramatically decreased in allergic and cigarette smoke exposure settings. We have previously demonstrated SPLUNC1 in vitro antibacterial property against Mycoplasma pneumoniae (Mp). However, its in vivo biological functions remain unclear. The objectives of this study were to determine the in vivo functions of SPLUNC1 following bacterial (eg, Mp) infection, and to examine the underlying mechanisms. We generated SPLUNC1-deficient mice and utilized transgenic mice overexpressing human SPLUNC1 exclusively within the airway epithelium. These mice were infected with Mp and, twenty-four hours post infection, their host defense responses were compared to littermate controls. Mp levels and inflammatory cells increased in the lungs of SPLUNC1(-/-) mice as compared to wild type controls. SPLUNC1 deficiency was shown to contribute to impaired neutrophil activation. In contrast, mice overexpressing hSPLUNC1 exclusively in airway epithelial cells demonstrated lower Mp levels. Furthermore, neutrophil elastase activity was significantly increased in mice overexpressing hSPLUNC1. Lastly, we demonstrated that SPLUNC1 enhanced Mp-induced human neutrophil elastase (HNE) activity, and HNE directly inhibited the growth of Mp. Our findings demonstrate a critical in vivo role of SPLUNC1 in host defense against bacterial infection, and likely provide a novel therapeutic approach to restore impaired lung innate immune responses to bacteria in patients with chronic lung diseases.
Insights
Short palate, lung, and nasal epithelium clone 1 (SPLUNC1) protein is crucial for lung defense against bacterial infections. Its deficiency impairs neutrophil function, while its overexpression enhances bacterial clearance.
Area of Science:
- Pulmonary immunology
- Innate immunity
- Bacterial pathogenesis
Background:
- Short palate, lung, and nasal epithelium clone 1 (SPLUNC1) is downregulated in airway diseases.
- SPLUNC1 exhibits in vitro antibacterial properties against Mycoplasma pneumoniae (Mp).
- The in vivo role of SPLUNC1 in host defense remains largely unknown.
Purpose of the Study:
- To elucidate the in vivo functions of SPLUNC1 during bacterial infection.
- To investigate the mechanisms underlying SPLUNC1's role in host defense.
- To assess SPLUNC1's therapeutic potential in chronic lung diseases.
Main Methods:
- Generation and use of SPLUNC1-deficient and human SPLUNC1-overexpressing transgenic mice.
- Infection of mice with Mycoplasma pneumoniae (Mp).
- Comparison of host defense responses, bacterial loads, and inflammatory cell infiltration between groups.
Main Results:
- SPLUNC1-deficient mice showed increased Mp levels and lung inflammation.
- SPLUNC1 deficiency impaired neutrophil activation.
- Overexpression of SPLUNC1 reduced Mp burden and enhanced neutrophil elastase activity.
- SPLUNC1 potentiated Mp-induced human neutrophil elastase (HNE) activity, which directly inhibited Mp growth.
Conclusions:
- SPLUNC1 plays a vital in vivo role in host defense against bacterial lung infections.
- SPLUNC1 enhances neutrophil elastase activity, contributing to bacterial clearance.
- Restoring SPLUNC1 function may offer a therapeutic strategy for bacterial lung diseases.
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