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A three-dimensional computer model analysis of three hypothetical biofilm detachment mechanisms

机译:三种假设的生物膜分离机制的三维计算机模型分析

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Three hypothetical mechanisms of detachment were incorporated into a three-dimensional computer model of biofilm development. The model integrated processes of substrate utilization, substrate diffusion, growth, cell advection, and detachment in a cellular automata frame-work. The purpose of this investigation was to characterize each of the mechanisms with respect to four criteria: the resulting biofilm structure, the existence of a steady state, the propensity for sloughing events, and the dynamics during starvation. The three detachment mechanisms analyzed represented various physical and biological influences hypothesized to affect biofilm detachment. The first invoked the concept of fluid shear removing biomass that protrudes far above the surface and is therefore subjected to relatively large drag forces. The second pathway linked detachment to changes in the local availability of a nutrient. The third pathway simulated an erosive process in which individual cells are lost from the surface of a biofilm cell cluster. The detachment mechanisms demonstrated diverse behaviors with respect to the four analysis criteria. The height-dependant mechanism produced flat, steady state biofilms that lacked sloughing events. Detachment based on substrate limitation produced significant sloughing events. The resulting biofilm structures included distinct, hollow clusters separated by channels. The erosion mechanism produced neither a non-zero steady state nor sloughing events. A mechanism combining all three-detachment mechanisms produced mushroom-like structures, The dynamics of biofilm decay during starvation were distinct for each detachment mechanism. These results show that detachment is a critical determinant of biofilm structure and of the dynamics of biofilm accumulation and loss.
机译:三种假设的脱离机制被纳入到生物膜发育的三维计算机模型中。该模型在细胞自动机框架中集成了底物利用,底物扩散,生长,细胞对流和分离的过程。这项研究的目的是针对四种标准来表征每种机制:所产生的生物膜结构,稳态的存在,脱落事件的倾向以及饥饿期间的动力学。分析的三种分离机制代表了各种可能影响生物膜分离的物理和生物学影响。第一个提出了流体剪切去除生物质的概念,该生物质突出于表面上方,因此受到较大的阻力。第二种途径将脱离与营养素的局部可用性变化联系起来。第三个途径模拟了侵蚀过程,其中单个细胞从生物膜细胞簇的表面丢失。分离机制显示出关于四种分析标准的不同行为。高度依赖的机制产生了平坦,稳定的生物膜,没有脱落现象。基于基材限制的分离产生明显的脱落事件。所得的生物膜结构包括由通道分隔的不同的空心簇。腐蚀机理既不产生非零稳态,也不产生脱落事件。结合了所有三种分离机制的机制产生了蘑菇状结构。每种分离机制在饥饿过程中生物膜衰减的动力学是不同的。这些结果表明,分离是生物膜结构以及生物膜积累和损失动力学的关键决定因素。

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