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Modelling mechanical and chemical treatment of biofilms with two phenotypic resistance mechanisms

机译:具有两个表型抵抗机制的生物膜机械和化学处理模型

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摘要

Bacterial biofilms are notoriously difficult to eradicate owing to a number of tolerance mechanisms including physiological, physical, genotypic and phenotypic variations. Recent focus has shifted to phenotypic tolerance which is apparently the main defence mechanism that protects biofilms against long-term disinfection. Previous mathematical models have addressed phenotypic dynamics by considering adaptive response and persister formation separately. The aim of this manuscript is to consider a combined model to understand the interplay between these two defence mechanisms. We find that each mechanism protects the biofilm differently and hence responds differently to antibiotic challenge. We focus on on-off dosing that has been shown to eradicate each subpopulation alone. Our results indicate that the combined resistance exhibits qualitatively similar behavior to persister formation for short dosing times, and similar behavior to adaptive resistance for long dosing times. To further contrast the behavior of the model under different parameter regimes, we explore two classes of combination treatment that include mechanical and chemical treatments. The examples focus on different applications - pipe clearance and dental carrie prevention - and demonstrate the underlying conclusion that adaptive and persister mechanism provide protection for different challenges and are thus not redundant systems and each may require specific treatment plans.
机译:众所周知,由于多种耐受机制,包括生理,物理,基因型和表型变异,细菌生物膜难以根除。最近的重点已经转移到表型耐受,这显然是保护生物膜免受长期消毒的主要防御机制。以前的数学模型通过分别考虑自适应响应和持久性形成来解决表型动力学问题。该手稿的目的是考虑一个组合模型,以了解这两种防御机制之间的相互作用。我们发现,每种机制对生物膜的保护都不同,因此对抗生素攻击的反应也不同。我们专注于已证明可根除每个亚群的开关量给药。我们的结果表明,在短剂量时,组合电阻的定性行为与持久性形成相似,而在长剂量时,组合电阻的行为与适应性电阻相似。为了进一步对比模型在不同参数方案下的行为,我们探索了两类组合处理,包括机械处理和化学处理。这些示例重点介绍了不同的应用程序-管道清理和龋齿预防-并得出了基本结论,即自适应和持久性机制可为不同的挑战提供保护,因此不是冗余系统,每个系统都可能需要特定的治疗计划。

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