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生物膜形成起始阶段细菌附着的多技能数学模型

A Multi-Skilled Mathematical Model of Bacterial Attachment in Initiation of Biofilms.

作者信息

Chathoth Kanchana, Fostier Louis, Martin Bénédicte, Baysse Christine, Mahé Fabrice

机构信息

CIMIAD, NUMECAN INSERM U1241, Université de Rennes 1, F-35043 Rennes, France.

IRMAR, CNRS UMR 6625, Université de Rennes, F-35000 Rennes, France.

出版信息

Microorganisms. 2022 Mar 23;10(4):686. doi: 10.3390/microorganisms10040686.

Abstract

The initial step of biofilm formation is bacteria attachment to biotic or abiotic surfaces and other bacteria through intra or interspecies interactions. Adhesion can be influenced by physicochemical conditions of the environment, such as iron. There is no available mathematical model of bacterial attachment giving realistic initiation rather than random adhesion. We describe a simple stochastic attachment model, from the simplest case in two dimensions with one bacterial species attaching on a homogeneous flat surface to more complex situations, with either several bacterial species, inhomogeneous or non-flat surfaces, or in three dimensions. The model depends on attachment probabilities (on the surface, laterally, or vertically on bacteria). Effects of each of these parameters were analyzed. This mathematical model is then applied to experimental oral microcolonies of , , and , either as mono-, two, or three species, under different iron concentrations. The model allows to characterize the adhesion of three bacterial species and explore the effect of iron on attachment. This model appears as a powerful tool for initial attachment analysis of bacterial species. It will enable further modeling of biofilm formation in later steps with biofilm initialization more relevant to real-life subgingival biofilms.

摘要

生物膜形成的初始步骤是细菌通过种内或种间相互作用附着于生物或非生物表面以及其他细菌。粘附可受环境的物理化学条件影响,如铁。目前尚无能够给出实际起始情况而非随机粘附的细菌附着数学模型。我们描述了一个简单的随机附着模型,从二维最简单的情况(一种细菌附着在均匀的平面上)到更复杂的情况,包括几种细菌、不均匀或非平面表面,或三维情况。该模型取决于附着概率(在表面、横向或垂直附着于细菌)。分析了每个参数的影响。然后将此数学模型应用于不同铁浓度下的实验性口腔微菌落,分别为单一菌种、两种或三种菌种。该模型能够表征三种细菌的粘附情况,并探索铁对附着的影响。该模型似乎是分析细菌物种初始附着的有力工具。它将有助于在后续步骤中对生物膜形成进行进一步建模,使生物膜初始化更符合实际的龈下生物膜情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/601f/9029265/8ae025e4b6b7/microorganisms-10-00686-g001.jpg

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