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Phenotypic heterogeneity in persisters: a novel 'hunker' theory of persistence
J Urbaniec1, Ye Xu1, Y Hu2
1Department of Microbial Sciences and University of Surrey, Guildford, Surrey, GU27XH, UK.
Abstract:
Persistence has been linked to treatment failure since its discovery over 70 years ago and understanding formation, nature and survival of this key antibiotic refractory subpopulation is crucial to enhancing treatment success and combatting the threat of antimicrobial resistance (AMR). The term 'persistence' is often used interchangeably with other terms such as tolerance or dormancy. In this review we focus on 'antibiotic persistence' which we broadly define as a feature of a subpopulation of bacterial cells that possesses the non-heritable character of surviving exposure to one or more antibiotics; and persisters as cells that possess this characteristic. We discuss novel molecular mechanisms involved in persister cell formation, as well as environmental factors which can contribute to increased antibiotic persistence in vivo, highlighting recent developments advanced by single-cell studies. We also aim to provide a comprehensive model of persistence, the 'hunker' theory which is grounded in intrinsic heterogeneity of bacterial populations and a myriad of 'hunkering down' mechanisms which can contribute to antibiotic survival of the persister subpopulation. Finally, we discuss antibiotic persistence as a 'stepping-stone' to AMR and stress the urgent need to develop effective anti-persister treatment regimes to treat this highly clinically relevant bacterial sub-population.
Insights
Understanding antibiotic persistence, a non-heritable trait enabling bacterial subpopulations to survive antibiotic exposure, is key to improving treatments and fighting antimicrobial resistance (AMR). This review explores persister cell mechanisms and proposes the
Area of Science:
- Microbiology
- Molecular Biology
- Antimicrobial Resistance
Background:
- Antibiotic persistence, a trait of bacterial subpopulations, is linked to treatment failure and antimicrobial resistance (AMR).
- The term 'persistence' is often confused with tolerance or dormancy.
- This review focuses on antibiotic persistence, defined as the non-heritable survival of bacterial cells exposed to antibiotics.
Purpose of the Study:
- To review novel molecular mechanisms and environmental factors influencing antibiotic persistence.
- To present a comprehensive model of persistence, the 'hunker' theory.
- To discuss antibiotic persistence as a precursor to AMR and advocate for anti-persister therapies.
Main Methods:
- Literature review focusing on antibiotic persistence.
- Analysis of recent single-cell studies on persister cell formation.
- Development of the 'hunker' theory model for persistence.
Main Results:
- Identified novel molecular mechanisms and environmental factors contributing to antibiotic persistence.
- Proposed the 'hunker' theory, explaining persistence through bacterial heterogeneity and 'hunkering down' strategies.
- Highlighted the role of persistence as a stepping-stone to AMR.
Conclusions:
- Understanding antibiotic persistence is crucial for combating AMR.
- Effective anti-persister treatment strategies are urgently needed.
- Further research into persister cell biology will enhance treatment success.
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