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Updated: Aug 7, 2026

Cystic Fibrosis Aggregate Biofilm Model to Study Infection-relevant Gene Expression
Published on: April 18, 2025
Expression and antimicrobial function of bactericidal permeability-increasing protein in cystic fibrosis patients
Diana Aichele1, Markus Schnare, Marc Saake
1Institut für Klinische Mikrobiologie, Immunologie und Hygiene der Universität Erlangen-Nürnberg, Wasserturmstr. 3, D-91054 Erlangen, Germany.
Insights
Cystic fibrosis (CF) patients express bactericidal permeability-increasing protein (BPI) in airways, which fights Pseudomonas aeruginosa. However, autoantibodies may block BPI
Area of Science:
- Pulmonary Medicine
- Microbiology
- Immunology
Background:
- Cystic fibrosis (CF) lung disease involves chronic Pseudomonas aeruginosa infection.
- Patients often have autoantibodies against bactericidal permeability-increasing protein (BPI).
Purpose of the Study:
- To investigate BPI expression and function in CF airways.
- To determine if BPI activity is affected by autoantibodies.
Main Methods:
- Analysis of BPI mRNA and protein in CF patient sputum and bronchoalveolar lavage samples.
- Flow cytometry to identify BPI-producing cells (neutrophils).
- In vitro studies with P. aeruginosa and purified BPI/peptides.
Main Results:
- CF patients consistently express BPI mRNA and protein in airways, primarily from neutrophils.
- BPI expression correlates with interleukin-8 levels.
- BPI and a derived peptide show antimicrobial activity against mucoid P. aeruginosa, including antibiotic-resistant strains.
- P. aeruginosa triggers rapid BPI release.
Conclusions:
- Functional BPI is present in CF airways and active against P. aeruginosa.
- CF-associated autoantibodies may impair BPI's antimicrobial function, contributing to chronic infection.
Abstract:
In cystic fibrosis (CF), the condition limiting the prognosis of affected children is the chronic obstructive lung disease accompanied by chronic and persistent infection with mostly mucoid strains of Pseudomonas aeruginosa. The majority of CF patients have antineutrophil cytoplasmic antibodies (ANCA) primarily directed against the bactericidal permeability-increasing protein (BPI) potentially interfering with antimicrobial effects of BPI. We analyzed the expression of BPI in the airways of patients with CF. In their sputum samples or bronchoalveolar lavage specimens, nearly all patients expressed BPI mRNA and protein, which were mainly products of neutrophil granulocytes as revealed by intracellular staining and subsequent flow cytometry. Repeated measurements revealed consistent individual BPI expression levels during several months quantitatively correlating with interleukin-8. In vitro, P. aeruginosa isolates from CF patients initiated the rapid release of BPI occurring independently of protein de novo syntheses. Furthermore, purified natural BPI as well as a 27-mer BPI-derived peptide displayed antimicrobial activity against even patient-derived mucoid P. aeruginosa strains and bacteria resistant against all antibiotics tested. Thus, BPI that is functionally active against mucoid P. aeruginosa strains is expressed in the airways of CF patients but may be hampered by autoantibodies, resulting in chronic infection.
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