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Separating Bacteria by Capsule Amount Using a Discontinuous Density Gradient
Published on: January 7, 2019
Fine capsule variation affects bacteriophage susceptibility in Klebsiella pneumoniae ST258
Carola Venturini1,2, Nouri L Ben Zakour1,2, Bethany Bowring1
1Centre for Infectious Diseases and Microbiology, The Westmead Institute for Medical Research (WIMR), Westmead, NSW, Australia.
Abstract:
Multidrug resistant (MDR) carbapenemase-producing (CP) Klebsiella pneumoniae, belonging to clonal group CG258, is capable of causing severe disease in humans and is classified as an urgent threat by health agencies worldwide. Bacteriophages are being actively explored as therapeutic alternatives to antibiotics. In an effort to define a robust experimental approach for effective selection of lytic viruses for therapy, we have fully characterized the genomes of 18 Kumoniae target strains and tested them against novel lytic bacteriophages (n = 65). The genomes of K pneumoniae carrying blaNDM and blaKPC were sequenced and CG258 isolates selected for bacteriophage susceptibility testing. The local K pneumoniae CG258 population was dominated by sequence type ST258 clade 1 (86%) with variations in capsular locus (cps) and prophage content. CG258-specific bacteriophages primarily targeted the capsule, but successful infection is also likely blocked in some by immunity conferred by existing prophages. Five tailed bacteriophages against K pneumoniae ST258 clade 1 were selected for further characterization. Our findings show that effective control of K pneumoniae CG258 with bacteriophage will require mixes of diverse lytic viruses targeting relevant cps variants and allowing for variable prophage content. These insights will facilitate identification and selection of therapeutic bacteriophage candidates against this serious pathogen.
Insights
Bacteriophages show promise against multidrug-resistant Klebsiella pneumoniae. Effective therapy requires diverse lytic viruses targeting specific bacterial capsule and prophage variations in CG258 strains.
Area of Science:
- Microbiology
- Genomics
- Phage Therapy
Background:
- Multidrug-resistant (MDR) carbapenemase-producing (CP) Klebsiella pneumoniae (CG258) is a global health threat.
- Bacteriophages are emerging as alternatives to antibiotics for treating bacterial infections.
Purpose of the Study:
- To establish a robust method for selecting effective lytic bacteriophages against K. pneumoniae CG258.
- To characterize K. pneumoniae CG258 isolates and their susceptibility to bacteriophages.
Main Methods:
- Genome sequencing of 18 K. pneumoniae strains.
- Testing 65 novel lytic bacteriophages against selected K. pneumoniae CG258 isolates.
- Analysis of sequence types, capsular loci, and prophage content.
Main Results:
- K. pneumoniae CG258 population dominated by ST258 clade 1 (86%).
- Bacteriophages primarily targeted the bacterial capsule; prophage content influenced infection success.
- Five tailed bacteriophages effective against K. pneumoniae ST258 clade 1 were identified.
Conclusions:
- Therapeutic control of K. pneumoniae CG258 necessitates bacteriophage cocktails.
- Cocktails must target diverse capsule variants and account for variable prophage content.
- This research aids in selecting viable bacteriophage candidates for treating K. pneumoniae infections.
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