论文标题

生物膜形成的随机建模与细菌群体传感

Stochastic Modeling of Biofilm Formation with Bacterial Quorum Sensing

论文作者

Gulec, Fatih, Eckford, Andrew W.

论文摘要

细菌通常生活在称为生物膜的复杂结构中,包括传达细菌菌落和细胞外聚合物物质(EPS)。由于生物膜与在不同环境中的感染或抗生素耐药性等有害作用有关,因此必须建模其形成。在本文中,使用细菌群体传感(QS)提出了一个随机模型以形成生物膜。在该模型中,将生物膜形成中的生物学过程建模为一个化学反应网络,其中包括细菌繁殖,自动诱导剂和EPS的生产以及它们的扩散。根据两态QS机制对改进的显式TAU-LEAP仿真算法进行了调整。我们的方法通过使用$ \ textit {pseudomonas putida} $ ISOF细菌的实验结果来验证自动诱导剂和细菌浓度。还表明,在QS状态变化后,生物膜中EPS的百分比显着增加,而在激活QS之前它会减少。提出的工作表明,如何通过在化学反应的随机模拟中使用QS机制对生物膜生长进行现实建模。

Bacteria generally live in complicated structures called biofilms, consisting of communicating bacterial colonies and extracellular polymeric substance (EPS). Since biofilms are related to detrimental effects such as infection or antibiotic resistance in different settings, it is essential to model their formation. In this paper, a stochastic model is proposed for biofilm formation, using bacterial quorum sensing (QS). In this model, the biological processes in the biofilm formation are modeled as a chemical reaction network which includes bacterial reproduction, productions of autoinducer and EPS, and their diffusion. The modified explicit tau-leap simulation algorithm is adapted based on the two-state QS mechanism. Our approach is validated by using the experimental results of $\textit{Pseudomonas putida}$ IsoF bacteria for autoinducer and bacteria concentration. It is also shown that the percentage of EPS in the biofilm increases significantly after the state change in QS, while it decreases before QS is activated. The presented work shows how the biofilm growth can be modeled realistically by using the QS mechanism in stochastic simulations of chemical reactions.

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