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Co-culture Models of Pseudomonas aeruginosa Biofilms Grown on Live Human Airway Cells
Published on: October 7, 2010
Pseudomonas aeruginosa adherence to human basement membrane collagen in vitro
1University Dept of Medicine, Queen Mary Hospital, The University of Hong Kong, Pokfulam, Hong Kong SAR, China. kwttsang@hkucc.hku.hk
Abstract:
The mechanisms for Pseudomonas aeruginosa colonisation in the airways of patients with bronchiectasis and cystic fibrosis are poorly understood. P. aeruginosa could evade mucociliary clearance by adhering to the basement membrane at areas denuded of intact respiratory epithelium. The authors have developed an in vitro model to study P. aeruginosa adherence to human basement membrane type-IV collagen by using scanning electron microscopy. P. aeruginosa adherence density was determined as the number of P. aeruginosa per 20 microscope fields (2,000x) to log inocular size after incubation at 37 degrees C for 45 min. The presence of phytohaemagglutinin (PHA)-E, which binds specifically to D-galactose-beta1-4-D-N-acetylglucosamine, significantly reduced P. aeruginosa adherence density compared with control. The presence of heparin and calcium also significantly reduced P. aeruginosa adherence density. P. aeruginosa adherence was not affected by the presence of proline, trans-hydroxyproline, glycine, galactose, N-acetylneuraminic acid, N-acetylglucosamine or Arachis hypogea. Pseudomonas aeruginosa adherence probably acts via recognition of the D-galactose-beta1-4-D-N-acetylglucosamine sequence on type-IV collagen and this process could be inhibited by heparin and calcium. As persistent Pseudomonas aeruginosa colonisation is detrimental to patients with cystic fibrosis and bronchiectasis and there is currently no effective treatment for its eradication, these results could lead to novel therapy for persistent Pseudomonas aeruginosa infection.
Insights
Pseudomonas aeruginosa evades airway clearance by adhering to basement membranes. Inhibiting this bacterial adherence with heparin and calcium offers potential new therapies for cystic fibrosis and bronchiectasis patients.
Area of Science:
- Microbiology
- Cell Biology
- Biochemistry
Background:
- Mechanisms of Pseudomonas aeruginosa airway colonization in bronchiectasis and cystic fibrosis are unclear.
- P. aeruginosa may evade clearance by adhering to basement membranes lacking respiratory epithelium.
Purpose of the Study:
- To investigate P. aeruginosa adherence to human basement membrane type-IV collagen in vitro.
- To identify factors influencing P. aeruginosa adherence to type-IV collagen.
Main Methods:
- Developed an in vitro model using scanning electron microscopy.
- Quantified P. aeruginosa adherence density after incubation with type-IV collagen.
- Assessed the effect of various compounds (PHA-E, heparin, calcium, amino acids, sugars) on adherence.
Main Results:
- Phytohaemagglutinin-E (PHA-E), heparin, and calcium significantly reduced P. aeruginosa adherence.
- Adherence was mediated by recognition of the D-galactose-beta1-4-D-N-acetylglucosamine sequence on type-IV collagen.
- Proline, glycine, galactose, and other tested compounds did not affect adherence.
Conclusions:
- P. aeruginosa likely adheres to type-IV collagen via specific sugar sequences.
- Heparin and calcium can inhibit this adherence mechanism.
- Findings suggest potential novel therapeutic strategies for persistent P. aeruginosa infections in CF and bronchiectasis.

