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Population and Single-Cell Analysis of Antibiotic Persistence in Escherichia coli
Published on: March 24, 2023
Determining the Development of Persisters in Extensively Drug-Resistant Acinetobacter baumannii upon Exposure to
Fiona Hui-Sian Wong1, Yiying Cai1,2, Hui Leck1
1Department of Pharmacy, Singapore General Hospital, Singapore.
Abstract:
Polymyxin B-based combinations are increasingly prescribed as a last-line option against extensively drug-resistant (XDR) Acinetobacter baumannii It is unknown if such combinations can result in the development of nondividing persister cells in XDR A. baumannii We investigated persister development upon exposure of XDR A. baumannii to polymyxin B-based antibiotic combinations using flow cytometry. Time-kill studies (TKSs) were conducted in three nonclonal XDR A. baumannii strains with 5 log10 CFU/ml bacteria against polymyxin B alone and polymyxin B-based two-drug combinations over 24 h. At different time points, samples were obtained and enumerated by viable plating and flow cytometry. Propidium iodide and carboxyfluorescein succinimidyl ester dyes were used to differentiate between live and dead cells and between dividing and nondividing cells, respectively, at the single-cell level, and nondividing live cells were resuscitated and characterized phenotypically. Our results from viable plating showed that polymyxin B plus meropenem and polymyxin B plus rifampin were each bactericidal (>99.9% kill compared to the initial inoculum) against 2/3 XDR A. baumannii strains at 24 h. By flow cytometry, however, none of the combinations were bactericidal against XDR A. baumannii at 24 h. Further analysis using cellular dyes in flow cytometry revealed that upon exposure to polymyxin B-based combinations, XDR A. baumannii entered a viable but nondividing persister state. These bacterial cells reinitiated division upon the removal of antibiotic pressure and did not have a growth deficit compared to the parent strain. We conclude that persister cells develop in XDR A. baumannii upon exposure to polymyxin B-based combinations and that nonplating methods appear to complement viable-plating methods in describing the killing activity of polymyxin B-based combinations against XDR A. baumannii.
Insights
Polymyxin B combinations can induce persister cells in extensively drug-resistant Acinetobacter baumannii. These viable but nondividing cells resume growth after antibiotic removal, highlighting the need for advanced detection methods.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Polymyxin B combinations are last-resort treatments for extensively drug-resistant (XDR) Acinetobacter baumannii.
- The potential for these combinations to induce nondividing persister cells in XDR A. baumannii is not well understood.
Purpose of the Study:
- To investigate the development of persister cells in XDR A. baumannii when exposed to polymyxin B-based antibiotic combinations.
- To compare the efficacy of traditional viable plating with flow cytometry in assessing antibiotic killing activity.
Main Methods:
- Time-kill studies were performed on three XDR A. baumannii strains using polymyxin B alone and in combination with meropenem or rifampin over 24 hours.
- Flow cytometry with propidium iodide and carboxyfluorescein succinimidyl ester dyes was used to differentiate live, dead, dividing, and nondividing cells.
- Nondividing live cells (persisters) were resuscitated and phenotypically characterized.
Main Results:
- Viable plating indicated bactericidal activity (>99.9% kill) for polymyxin B plus meropenem and polymyxin B plus rifampin against 2/3 strains at 24 hours.
- Flow cytometry revealed that none of the combinations were bactericidal against XDR A. baumannii at 24 hours.
- Exposure to polymyxin B-based combinations induced a viable but nondividing persister state in XDR A. baumannii, which resumed division upon antibiotic removal without a growth deficit.
Conclusions:
- Polymyxin B-based combinations can induce persister cell formation in XDR A. baumannii.
- Flow cytometry offers complementary insights to viable plating for evaluating the activity of polymyxin B combinations against XDR A. baumannii.
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