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Synthesis of biofilm resistance characteristics against antibiotics

机译:合成生物膜对抗生素的耐药性

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A phenomenological model for the biofilm resistance against biocide activity is analyzed in this work. The effect of different biofilm physical attributes when exposed to antibiotic treatment is investigated. Pertinent aspects affecting the biofilm resistance characteristics such as transport of the bulk fluid within the reactor, diffusive-reactive transport of the dissolved phase into the biofilm, convective-reactive transport of particulate phase, dynamic biofilm thickness, cell detachment, extracellular polymeric substance (EPS) production and persister cell formation are analyzed and incorporated in the presented model. Microbial survival fraction is correlated in terms of pertinent non-dimensional groups from biofilm and bulk fluid governing equations and the effect of persister cell formation on the biofilm response to biocide disinfection is demonstrated. To the authors' best knowledge, the current model is the first comprehensive model that considers several physical attributes simultaneously and presents a set of correlations to predict the microbial survival of a biofilm subject to the biocide treatment.
机译:在这项工作中分析了生物膜对杀生物剂的抗性的现象学模型。研究了暴露于抗生素治疗后不同生物膜物理属性的影响。影响生物膜抵抗特性的相关方面,例如反应器内大量流体的运输,溶解相向生物膜的扩散-反应性运输,颗粒相的对流-反应性运输,生物膜的动态厚度,细胞分离,细胞外聚合物(EPS) )生产和持久性细胞的形成进行了分析,并纳入提出的模型。微生物存活分数与来自生物膜和体液控制方程的相关无量纲相关,并且证明了持久性细胞形成对生物膜对杀生物剂消毒反应的影响。据作者所知,当前模型是第一个综合模型,该模型同时考虑多个物理属性,并提供一组相关性,以预测经过杀菌剂处理的生物膜的微生物存活率。

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