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细菌附着于非生物表面的物理化学过程:对机理研究、可预测性及控制策略开发的挑战

The physicochemical process of bacterial attachment to abiotic surfaces: Challenges for mechanistic studies, predictability and the development of control strategies.

作者信息

Wang Yi, Lee Sui Mae, Dykes Gary

机构信息

a School of Science, Monash University, Jalan Lagoon Selatan , Bandar Sunway , Malaysia.

出版信息

Crit Rev Microbiol. 2015;41(4):452-64. doi: 10.3109/1040841X.2013.866072. Epub 2014 Mar 17.

Abstract

Bacterial attachment to abiotic surfaces can be explained as a physicochemical process. Mechanisms of the process have been widely studied but are not yet well understood due to their complexity. Physicochemical processes can be influenced by various interactions and factors in attachment systems, including, but not limited to, hydrophobic interactions, electrostatic interactions and substratum surface roughness. Mechanistic models and control strategies for bacterial attachment to abiotic surfaces have been established based on the current understanding of the attachment process and the interactions involved. Due to a lack of process control and standardization in the methodologies used to study the mechanisms of bacterial attachment, however, various challenges are apparent in the development of models and control strategies. In this review, the physicochemical mechanisms, interactions and factors affecting the process of bacterial attachment to abiotic surfaces are described. Mechanistic models established based on these parameters are discussed in terms of their limitations. Currently employed methods to study these parameters and bacterial attachment are critically compared. The roles of these parameters in the development of control strategies for bacterial attachment are reviewed, and the challenges that arise in developing mechanistic models and control strategies are assessed.

摘要

细菌附着于非生物表面可被解释为一个物理化学过程。该过程的机制已得到广泛研究,但由于其复杂性,尚未被充分理解。物理化学过程会受到附着系统中各种相互作用和因素的影响,包括但不限于疏水相互作用、静电相互作用和基质表面粗糙度。基于目前对附着过程及相关相互作用的理解,已建立了细菌附着于非生物表面的机制模型和控制策略。然而,由于用于研究细菌附着机制的方法缺乏过程控制和标准化,在模型和控制策略的开发中出现了各种挑战。在本综述中,描述了影响细菌附着于非生物表面过程的物理化学机制、相互作用和因素。基于这些参数建立的机制模型在其局限性方面进行了讨论。对目前用于研究这些参数和细菌附着的方法进行了批判性比较。综述了这些参数在细菌附着控制策略开发中的作用,并评估了在开发机制模型和控制策略时出现的挑战。

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