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一种用于表征电解质水溶液中生物分子和纳米材料的Java应用程序。

A Java Application to Characterize Biomolecules and Nanomaterials in Electrolyte Aqueous Solutions.

作者信息

Marucho Marcelo

机构信息

Department of Physics and Astronomy, The University of Texas at San Antonio, San Antonio, Texas 78249.

出版信息

Comput Phys Commun. 2019 Sep;242:104-119. doi: 10.1016/j.cpc.2019.03.022. Epub 2019 Apr 30.

Abstract

The electrostatic, entropic and surface interactions between a macroion (nanoparticle or biomolecule), surrounding ions and water molecules play a fundamental role in the behavior and function of colloidal systems. However, the molecular mechanisms governing these phenomena are still poorly understood. One of the major limitations in procuring this understanding is the lack of appropriate computational tools. Additionally, only experts in the field with an extensive background in programming, who are trained in statistical mechanics, and have access to supercomputers are able to study these systems. To overcome these limitations, in this article, we present a free, multiplatform, portable Java software, which provides experts and non-experts in the field an easy and efficient way to obtain an accurate molecular characterization of electrical and structural properties of aqueous electrolyte mixture solutions around both cylindrical- and spherical-like rigid macroions under multiple conditions. These properties include the normalized ions and water density profile distributions, the mean electrostatic potential, the integrated charge, the zeta potential, the electrostatic potential energy, the particle crowding entropy energy, the ion-ion electrostatic direct correlation energy, and the ionic potential of mean force. The Java software does not require outstanding skills and comes with detailed user-guide documentation. The application is based on the so-called Classical Density Functional Theory Solver (CSDFTS), which was successfully applied to a variety of rod-like biopolymers, rigid-like globular proteins, nanoparticles, and nano-rods. CSDFTS implements several electrolyte and macroion models, uses different levels of approximation and takes advantage of high performance Fortran90 routines and optimized libraries. These features enable the software to run on single processor computers at low-to-moderate computational cost depending on the computer performance, the grid resolution, and the characterization of the macroion and the electrolyte solution, among other factors. As a unique feature, the software comes with a graphical user interface (GUI) that allows users to take advantage of the visually guided setup of the required input data to properly characterize the system and configure the solver. Several examples on nanomaterials and biomolecules are provided to illustrate the use of the GUI and the solver performance.

摘要

大离子(纳米颗粒或生物分子)、周围离子和水分子之间的静电、熵和表面相互作用在胶体系统的行为和功能中起着基本作用。然而,控制这些现象的分子机制仍知之甚少。获取这种理解的主要限制之一是缺乏合适的计算工具。此外,只有该领域中具有广泛编程背景、接受过统计力学培训且能够使用超级计算机的专家才能研究这些系统。为了克服这些限制,在本文中,我们展示了一款免费的、多平台的、便携式Java软件,它为该领域的专家和非专家提供了一种简单有效的方法,以在多种条件下准确获得围绕圆柱状和球状刚性大离子的水性电解质混合溶液的电学和结构性质的分子特征。这些性质包括归一化的离子和水密度分布、平均静电势、积分电荷、zeta电位、静电势能、粒子拥挤熵能、离子 - 离子静电直接相关能以及离子平均力势。该Java软件不需要卓越的技能,并附带详细的用户指南文档。该应用基于所谓的经典密度泛函理论求解器(CSDFTS),它已成功应用于各种棒状生物聚合物、类刚性球状蛋白质、纳米颗粒和纳米棒。CSDFTS实现了多种电解质和大离子模型,使用不同程度的近似,并利用高性能的Fortran90例程和优化库。这些特性使该软件能够在单处理器计算机上运行,计算成本低至中等,具体取决于计算机性能、网格分辨率以及大离子和电解质溶液的特征等因素。作为一个独特的功能,该软件带有图形用户界面(GUI),允许用户利用可视化引导设置所需的输入数据,以正确表征系统并配置求解器。提供了几个关于纳米材料和生物分子的示例,以说明GUI的使用和求解器性能。

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本文引用的文献

4
MPBEC, a Matlab Program for Biomolecular Electrostatic Calculations.MPBEC,一个用于生物分子静电计算的Matlab程序。
Comput Phys Commun. 2016 Jan 1;198:179-194. doi: 10.1016/j.cpc.2015.08.029. Epub 2015 Sep 10.

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