Hyperbaric Oxygen Sensitizes Anoxic Pseudomonas aeruginosa Biofilm to Ciprofloxacin

Author:

Kolpen Mette12ORCID,Lerche Christian J.1,Kragh Kasper N.2,Sams Thomas3,Koren Klaus4,Jensen Anna S.3,Line Laura12,Bjarnsholt Thomas12,Ciofu Oana2,Moser Claus1,Kühl Michael45,Høiby Niels12,Jensen Peter Ø.12

Affiliation:

1. Department of Clinical Microbiology, Rigshospitalet, Copenhagen, Denmark

2. Department of Immunology and Microbiology, Costerton Biofilm Center, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark

3. Biomedical Engineering, Department of Electrical Engineering, Technical University of Denmark, Lyngby, Denmark

4. Marine Biological Section, Department of Biology, University of Copenhagen, Helsingør, Denmark

5. Climate Change Cluster, University of Technology Sydney, Sydney, Australia

Abstract

ABSTRACT Chronic Pseudomonas aeruginosa lung infection is characterized by the presence of endobronchial antibiotic-tolerant biofilm, which is subject to strong oxygen (O 2 ) depletion due to the activity of surrounding polymorphonuclear leukocytes. The exact mechanisms affecting the antibiotic susceptibility of biofilms remain unclear, but accumulating evidence suggests that the efficacy of several bactericidal antibiotics is enhanced by stimulation of aerobic respiration of pathogens, while lack of O 2 increases their tolerance. In fact, the bactericidal effect of several antibiotics depends on active aerobic metabolism activity and the endogenous formation of reactive O 2 radicals (ROS). In this study, we aimed to apply hyperbaric oxygen treatment (HBOT) to sensitize anoxic P. aeruginosa agarose biofilms established to mimic situations with intense O 2 consumption by the host response in the cystic fibrosis (CF) lung. Application of HBOT resulted in enhanced bactericidal activity of ciprofloxacin at clinically relevant durations and was accompanied by indications of restored aerobic respiration, involvement of endogenous lethal oxidative stress, and increased bacterial growth. The findings highlight that oxygenation by HBOT improves the bactericidal activity of ciprofloxacin on P. aeruginosa biofilm and suggest that bacterial biofilms are sensitized to antibiotics by supplying hyperbaric O 2 .

Funder

UC CARE

The Human Frontiers Science Program

The Danish Council for Independent Research

Lundbeckfonden

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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