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表面活性剂对铜绿假单胞菌 852 和红球菌 3586 细胞表面张力参数和疏水性的影响。

Effects of surfactants on cell surface tension parameters and hydrophobicity of Pseudomonas putida 852 and Rhodococcus erythropolis 3586.

机构信息

Department of Civil and Environmental Engineering, University of Auckland, Auckland, New Zealand.

出版信息

Colloids Surf B Biointerfaces. 2013 May 1;105:43-50. doi: 10.1016/j.colsurfb.2012.12.034. Epub 2013 Jan 4.

Abstract

The interaction between bacteria and surfaces is central to many environmental, industrial and medical applications. Surfactants are commonly used in these applications and can potentially influence the bacterium/surface interaction. The effect of surfactants upon bacterial cell surface thermodynamic properties was examined using a combination of contact angle measurements and LW-AB surface free energy calculation. Two bacterial strains, hydrophilic Pseudomonas putida 852 and hydrophobic Rhodococcus erythropolis 3586, and two surfactant types, the anionic biosurfactant rhamnolipid and the non-ionic chemical surfactant tergitol, were examined. The study demonstrated that surfactant treatment could modify cell surface tension parameters including Lifshitz-van der Waals (γ(LW)), electron-donor (γ(-)) and electron-acceptor (γ(+)) and thereby the bacterial cell hydrophobicity, depending on the surfactant type and concentration and the bacterial surface characteristics. Rhamnolipid and tergitol were found to increase P. putida 852 hydrophobicity, but decrease the hydrophobicity of R. erythropolis 3586. The extent of change was dependent on surfactant concentration. Among the three surface tension parameters, γ(-) was found to be the most important in predicting bacterial cell hydrophobicity.

摘要

细菌与表面的相互作用是许多环境、工业和医疗应用的核心。表面活性剂通常用于这些应用中,并可能影响细菌/表面的相互作用。本研究采用接触角测量和 LW-AB 表面自由能计算相结合的方法,考察了表面活性剂对细菌细胞表面热力学性质的影响。研究了两种细菌菌株,亲水性假单胞菌 852 和疏水性红球菌 3586,以及两种表面活性剂类型,阴离子生物表面活性剂鼠李糖脂和非离子化学表面活性剂曲拉通,研究表明,表面活性剂处理可以改变细胞表面张力参数,包括 Lifshitz-van der Waals(γ(LW))、供电子(γ(-))和受电子(γ(+)),从而根据表面活性剂类型和浓度以及细菌表面特性,改变细菌的疏水性。鼠李糖脂和曲拉通被发现增加了 P. putida 852 的疏水性,但降低了 R. erythropolis 3586 的疏水性。变化的程度取决于表面活性剂的浓度。在这三个表面张力参数中,γ(-)被发现是预测细菌细胞疏水性的最重要参数。

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