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Intra-tracheal Administration of Haemophilus influenzae in Mouse Models to Study Airway Inflammation
Published on: March 2, 2016
Haemophilus influenzae LicB contributes to lung damage in an aged mice co-infection model
Jessica Bondy1, Sofya Osharovich1, Julie Storm1
1West Chester University of Pennsylvania, Department of Biology, 750 South Church Street, West Chester, PA 19383, USA.
Insights
The licB gene in Haemophilus influenzae is a virulence factor, contributing to lung damage in aged mice during co-infection. Deleting licB reduced lung tissue damage, suggesting its role in bacterial adherence and pathogenesis.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Phosphorylcholine (ChoP) decoration of lipopolysaccharides (LPS) is a key virulence factor for *Haemophilus influenzae* ( *H. influenzae*).
- The *lic1* operon, including the choline transporter gene *licB*, facilitates ChoP incorporation onto LPS.
- Understanding *licB*'s role is crucial for developing targeted therapies against *H. influenzae* infections, particularly in vulnerable populations.
Purpose of the Study:
- To investigate the role of the *licB* gene in the pathogenesis of *H. influenzae* infection in an aged mice model.
- To evaluate the impact of *licB* deletion on virulence and host response during co-infection with influenza A virus.
Main Methods:
- Development of a co-infection model using influenza A virus and *H. influenzae* in aged mice.
- Comparison of virulence between wild-type *H. influenzae* and a *licB* mutant strain.
- Assessment of host response, including weight loss and lung tissue damage.
Main Results:
- Co-infection with a low dose of *H. influenzae* proved lethal in aged mice.
- Mice infected with the *licB* mutant exhibited significantly reduced lung tissue damage compared to those infected with the wild-type strain.
- No significant difference in weight loss was observed between groups, but *licB* deletion attenuated virulence.
Conclusions:
- The *licB* gene is a significant virulence factor for *H. influenzae* in the aged mouse lung, likely mediated by ChoP expression and enhanced host cell binding.
- The co-infection model serves as a valuable system for studying *H. influenzae* pathogenesis in aged mice.
- Aged mice showed detrimental effects from secondary bacterial infection, unlike mature mice exhibiting immune protection.
Abstract:
Phosphorylcholine (ChoP) decoration of lipopolysaccharides is an important virulence strategy adopted by Haemophilus influenzae to establish a niche on the mucosal surface and to promote adherence to the host cells. The incorporation of ChoP on the LPS surface involves the lic1 operon, which consists of the licA, licB, licC, and licD genes. Among which, licB is a choline transporter gene required for acquisition of choline from environmental sources. In this study, we investigated the pathogenesis of the licB gene in an aged mice infection model. Due to immediate clearance of H. influenzae upon infection in mice, we employed influenza A virus and H. influenzae co-infection model. Our data showed that in the co-infection model, the secondary bacterial infection with a very low H. influenzae concentration of 100 colony forming unit is lethal to the aged mice. Although we did not observe any differences in weight loss between parent and licB mutant strains during the course of infection, a significant reduction of lung tissue damage was observed in the licB mutant infected aged mice. These results suggest that the licB gene is a virulence factor during H. influenzae infection in the lung in aged mice, possibly due to the increased binding to the host cell receptor via ChoP expression on the bacterial surface. In addition, when aged mice and mature mice were compared in the challenge experiments, we did not observe any protective immunity in the co-infection model suggesting the detrimental effects of the secondary bacterial infection on the aged mice in contrast to obvious immune-protections observed in the mature mice. The results of our experiments also implied that the co-infection model with influenza A virus and H. influenzae may be employed as a model system to study H. influenzae pathogenesis in vivo in aged mice.
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