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Legionella pneumophila Outer Membrane Vesicles: Isolation and Analysis of Their Pro-inflammatory Potential on Macrophages
Published on: February 22, 2017
Cyclodextrins reduce the ability of Pseudomonas aeruginosa outer-membrane vesicles to reduce CFTR Cl- secretion
Roxanna Barnaby1, Katja Koeppen1, Bruce A Stanton1
1Department of Microbiology and Immunology, The Geisel School of Medicine at Dartmouth, Hanover, New Hampshire.
Abstract:
Pseudomonas aeruginosa secretes outer-membrane vesicles (OMVs) that fuse with cholesterol-rich lipid rafts in the apical membrane of airway epithelial cells and decrease wt-CFTR Cl- secretion. Herein, we tested the hypothesis that a reduction of the cholesterol content of CF human airway epithelial cells by cyclodextrins reduces the inhibitory effect of OMVs on VX-809 (lumacaftor)-stimulated Phe508del CFTR Cl- secretion. Primary CF bronchial epithelial cells and CFBE cells were treated with vehicle, hydroxypropyl-β-cyclodextrin (HPβCD), or methyl-β-cyclodextrin (MβCD), and the effects of OMVs secreted by P. aeruginosa on VX-809 stimulated Phe508del CFTR Cl- secretion were measured in Ussing chambers. Neither HPβCD nor MβCD were cytotoxic, and neither altered Phe508del CFTR Cl- secretion. Both cyclodextrins reduced OMV inhibition of VX-809-stimulated Phe508del-CFTR Cl- secretion when added to the apical side of CF monolayers. Both cyclodextrins also reduced the ability of P. aeruginosa to form biofilms and suppressed planktonic growth of P. aeruginosa. Our data suggest that HPβCD, which is in clinical trials for Niemann-Pick Type C disease, and MβCD, which has been approved by the U.S. Food and Drug Administration for use in solubilizing lipophilic drugs, may enhance the clinical efficacy of VX-809 in CF patients when added to the apical side of airway epithelial cells, and reduce planktonic growth and biofilm formation by P. aeruginosa. Both effects would be beneficial to CF patients.
Insights
Cyclodextrins reduce Pseudomonas aeruginosa outer-membrane vesicle inhibition of CFTR function in cystic fibrosis cells. These compounds also inhibit bacterial growth and biofilm formation, potentially improving VX-809 efficacy.
Area of Science:
- Cell Biology
- Microbiology
- Pharmacology
Background:
- Pseudomonas aeruginosa outer-membrane vesicles (OMVs) inhibit wild-type CFTR chloride secretion by fusing with cholesterol-rich lipid rafts.
- VX-809 (lumacaftor) is a CFTR corrector used to treat cystic fibrosis (CF).
Purpose of the Study:
- To investigate if reducing airway epithelial cell cholesterol content with cyclodextrins can mitigate OMV-mediated inhibition of VX-809-stimulated Phe508del CFTR chloride secretion.
- To assess the impact of cyclodextrins on P. aeruginosa growth and biofilm formation.
Main Methods:
- Primary CF bronchial epithelial cells and CFBE cells were treated with hydroxypropyl-β-cyclodextrin (HPβCD) or methyl-β-cyclodextrin (MβCD).
- Effects on VX-809-stimulated Phe508del CFTR chloride secretion were measured using Ussing chambers.
- Bacterial growth and biofilm formation assays were performed.
Main Results:
- HPβCD and MβCD were not cytotoxic and did not affect basal Phe508del CFTR secretion.
- Both cyclodextrins significantly reduced OMV inhibition of VX-809-stimulated secretion when applied apically.
- HPβCD and MβCD reduced P. aeruginosa biofilm formation and suppressed planktonic growth.
Conclusions:
- Apical administration of HPβCD or MβCD may enhance VX-809 clinical efficacy in CF patients by improving CFTR function.
- Cyclodextrins demonstrate potential as adjunct therapies to combat P. aeruginosa infections in CF by inhibiting bacterial growth and biofilm formation.
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