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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Analysis of the Interfacial Properties of Fibrillated and Nonfibrillated Oral Streptococcal Strains from Electrophoretic Mobility and Titration Measurements:Evidence for the Shortcomings of the 'Classical Soft-Particle Approach'
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Analysis of the Interfacial Properties of Fibrillated and Nonfibrillated Oral Streptococcal Strains from Electrophoretic Mobility and Titration Measurements:Evidence for the Shortcomings of the 'Classical Soft-Particle Approach'

机译:从电泳迁移率和滴定法分析原纤维和非原纤维口腔链球菌菌株的界面性质:“经典软颗粒法”缺点的证据

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摘要

Chemical and structural intricacies of bacterial cells complicate the quantitative evaluation of the physicochemical properties pertaining to the cell surface.The presence of various types of cell surface appendages has a large impact on those properties and therefore on various interfacial phenomena,such as aggregation and adhesion.In this paper,an advanced analysis of the electrophoretic mobilities of fibrillated and nonfibrillated strains (Streptococcus salivarius HB and Streptococcus salivarius HB-C12,respectively) is performed over a wide range of pH and ionic strength conditions on the basis of a recent electrokinetic theory for soft particles.The latter extends the approximate formalism originally developed by Ohshima by solving rigorously the fundamental electrokinetic equations without restrictions on the bacterial size,charge,and double layer thickness.It further allows (i) a straightforward implementation of the dissociation characteristics,as evaluated from titration experiments,of the ionogenic charged groups distributed throughout the bacterial cell wall and/or the surrounding exopolymer layer and (ii) the inclusion of possible specific interactions between the charged groups and ions from the background electrolyte other than charge-determining ions.The theory also enables an estimation of possible swelling/shrinking processes operating on the outer polymeric layer of the bacterium.Application of the electrokinetic model to HB and HB-C12 clearly shows a significant discrepancy between the amount of surface charges probed by electrophoresis and by protolytic titration.This is ascribed to the specific adsorption of cations onto pristine charged sites in the cell wall.Physicochemical parameters pertaining to the hydrodynamics (softness degree) and electrostatics of the bacterial cell wall (HB-C12) and soft polymeric layer (HB) are quantitatively derived.
机译:细菌细胞的化学和结构复杂性使得对与细胞表面有关的物理化学性质的定量评估变得复杂。各种类型的细胞表面附属物的存在对这些性质具有很大的影响,因此对各种界面现象(例如聚集和粘附)也有很大的影响。本文基于最新的电动理论,在广泛的pH和离子强度条件下,对原纤维和非原纤维菌株(唾液链球菌HB和唾液链球菌HB-C12)的电泳迁移率进行了深入分析。后者通过严格求解基本的电动方程而扩展了由大岛最初开发的近似形式主义,而不受细菌大小,电荷和双层厚度的限制。它进一步允许(i)如所评估的那样直接实现解离特性来自滴定实验包括分布在整个细菌细胞壁和/或周围的外聚合物层中的电离带电基团;以及(ii)在带电基团与背景电解质中的离子(除了确定电荷的离子)之间可能存在特定的相互作用。可以估算细菌外聚合物层上可能发生的溶胀/收缩过程。将电动模型应用于HB和HB-C12显然表明,电泳探测到的表面电荷量与蛋白水解滴定之间存在显着差异。归因于阳离子在细胞壁上原始电荷位点上的特异性吸附。定量推导了与细菌细胞壁(HB-C12)和柔软的聚合物层(HB)的流体力学(柔软度)和静电有关的理化参数。

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