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利用平滑函数描述电荷调节体积电荷密度分布来研究细菌细胞壁的静电行为。

The electrostatic behavior of the bacterial cell wall using a smoothing function to describe the charge-regulated volume charge density profile.

作者信息

Barbosa Nathalia S V, Lima Eduardo R A, Tavares Frederico W

机构信息

Programa de Pós-graduação em Engenharia Química, Universidade do Estado do Rio de Janeiro, CEP 20550-013, Rio de Janeiro, RJ, Brazil.

Escola de Química, Universidade Federal do Rio de Janeiro, CEP 21949-900, Rio de Janeiro, RJ, Brazil; Programa de Engenharia Química, COPPE, Universidade Federal do Rio de Janeiro, CEP 21945-970, Rio de Janeiro, RJ, Brazil.

出版信息

Colloids Surf B Biointerfaces. 2015 Oct 1;134:447-52. doi: 10.1016/j.colsurfb.2015.06.066. Epub 2015 Jul 10.

Abstract

The Donnan potential can be observed in many biological systems due to the presence of polyelectrolytes as proteins and nucleic acids. The aim of this work was to present a useful tool to describe the fixed and charge-regulated volume charge density profile through the use of a smoothing function and to obtain the electrostatic potential profile as well as the Donnan potential of this system by solving Poisson-Boltzmann (PB) equation. When we use the smoothing function, the Donnan potential arises automatically from the solution of only one Poisson-Boltzmann equation and it is not necessary to impose this potential for treating charged system in the presence of a membrane. The electrostatic behavior across the Bacillus brevis wall considering the dependence on the ionization of the cell wall functional groups as a function of the solution pH was analyzed. An important issue was to show that potentiometric titration data could be used together with the Poisson-Boltzmann equation to predict the electrostatic behavior (e.g., zeta potential) of the bacterial cell surface.

摘要

由于蛋白质和核酸等聚电解质的存在,唐南电位可在许多生物系统中观察到。这项工作的目的是提供一种有用的工具,通过使用平滑函数来描述固定的和电荷调节的体积电荷密度分布,并通过求解泊松-玻尔兹曼(PB)方程来获得该系统的静电势分布以及唐南电位。当我们使用平滑函数时,唐南电位仅从一个泊松-玻尔兹曼方程的解中自动产生,并且在存在膜的情况下处理带电系统时无需施加此电位。分析了短芽孢杆菌细胞壁上的静电行为,考虑了细胞壁官能团的电离对溶液pH的依赖性。一个重要的问题是表明电位滴定数据可以与泊松-玻尔兹曼方程一起用于预测细菌细胞表面的静电行为(例如,zeta电位)。

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