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A Three-Dimensional Computer Model of Four Hypothetical Mechanisms Protecting Biofilms from Antimicrobials

机译:三种假设机制保护生物膜免受微生物侵害的三维计算机模型

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摘要

Four hypothetical mechanisms for protection of biofilms against antimicrobials were incorporated into a three-dimensional model of biofilm growth and development. The model integrated processes of substrate utilization, diffusion, growth, cell migration, death, and detachment in a cellular automaton framework. Compared to simulations of unprotected biofilms, each of the protective mechanisms provided some tolerance to antimicrobial action. When the mechanisms were compared to each other, the behaviors of the four protective mechanisms produced distinct shapes of killing curves, nonuniform spatial patterns of survival and cell type distribution, and anticipated susceptibility patterns for dispersed biofilm cells. The differences between the protective mechanisms predicted in these simulations could guide the design of experiments to discriminate antimicrobial tolerance mechanisms in biofilms. Each of the mechanisms could be a plausible avenue of biofilm protection.
机译:四种假设的保护生物膜抗微生物的机制被纳入到生物膜生长和发育的三维模型中。该模型在细胞自动机框架中整合了底物利用,扩散,生长,细胞迁移,死亡和脱落的过程。与未保护的生物膜的模拟相比,每种保护机制都对抗菌作用具有一定的耐受性。当将机制相互比较时,四种保护机制的行为产生了不同的杀伤曲线形状,不均匀的生存空间模式和细胞类型分布以及预期的生物膜分散细胞敏感性模式。在这些模拟中预测的保护机制之间的差异可以指导区分生物膜中抗微生物耐受机制的实验设计。每种机制都可能是生物膜保护的合理途径。

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