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Updated: Jul 14, 2026

Evaluation of Host-Pathogen Responses and Vaccine Efficacy in Mice
Published on: February 22, 2019
The Bordetella Bps polysaccharide is critical for biofilm development in the mouse respiratory tract
Gina Parise Sloan1, Cheraton F Love, Neelima Sukumar
1Program in Molecular Genetics, Wake Forest University Health Sciences, Medical Center Blvd., Winston-Salem, North Carolina 27157, USA.
Abstract:
Bordetellae are respiratory pathogens that infect both humans and animals. Bordetella bronchiseptica establishes asymptomatic and long-term to life-long infections of animal nasopharynges. While the human pathogen Bordetella pertussis is the etiological agent of the acute disease whooping cough in infants and young children, it is now being increasingly isolated from the nasopharynges of vaccinated adolescents and adults who sometimes show milder symptoms, such as prolonged cough illness. Although it has been shown that Bordetella can form biofilms in vitro, nothing is known about its biofilm mode of existence in mammalian hosts. Using indirect immunofluorescence and scanning electron microscopy, we examined nasal tissues from mice infected with B. bronchiseptica. Our results demonstrate that a wild-type strain formed robust biofilms that were adherent to the nasal epithelium and displayed architectural attributes characteristic of a number of bacterial biofilms formed on inert surfaces. We have previously shown that the Bordetella Bps polysaccharide encoded by the bpsABCD locus is critical for the stability and maintenance of three-dimensional structures of biofilms. We show here that Bps is essential for the formation of efficient nasal biofilms and is required for the colonization of the nose. Our results document a biofilm lifestyle for Bordetella in mammalian respiratory tracts and highlight the essential role of the Bps polysaccharide in this process and in persistence of the nares.
Insights
Bordetella bacteria form robust biofilms in mammalian respiratory tracts, crucial for nasal colonization and persistence. The Bps polysaccharide is essential for efficient biofilm formation and infection.
Area of Science:
- Microbiology
- Pathogenesis
- Bacterial biofilms
Background:
- Bordetellae are significant respiratory pathogens affecting humans and animals.
- While Bordetella biofilm formation is known in vitro, its in vivo role in mammalian hosts remains uncharacterized.
Purpose of the Study:
- To investigate the biofilm lifestyle of Bordetella bronchiseptica in mammalian respiratory tracts.
- To determine the role of the Bps polysaccharide in nasal biofilm formation and colonization.
Main Methods:
- Indirect immunofluorescence microscopy of infected mouse nasal tissues.
- Scanning electron microscopy of Bordetella biofilms in vivo.
Main Results:
- Wild-type B. bronchiseptica formed robust, adherent biofilms on the nasal epithelium.
- The Bps polysaccharide was essential for efficient nasal biofilm formation and colonization.
- Bps is critical for Bordetella persistence in the nares.
Conclusions:
- Bordetella exhibits a biofilm lifestyle within mammalian respiratory tracts.
- The Bps polysaccharide plays a vital role in Bordetella biofilm development and host colonization.
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