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水药物溶液的物理化学性质:从基础热力学到先进的实验和模拟结果。

Physico-chemical properties of aqueous drug solutions: From the basic thermodynamics to the advanced experimental and simulation results.

机构信息

Department of Life Sciences, University of Trieste, Via Giorgieri 1, I-34134 Trieste, Italy.

Department of Chemical and Pharmaceutical Sciences, University of Trieste, Via Giorgieri 1, I-34134 Trieste, Italy.

出版信息

Int J Pharm. 2018 Apr 5;540(1-2):65-77. doi: 10.1016/j.ijpharm.2018.01.042. Epub 2018 Feb 2.

Abstract

The physical chemical properties of aqueous solutions of model compounds are illustrated in relation to hydration and solubility issues by using three perspectives: thermodynamic, spectroscopic and molecular dynamics simulations. The thermodynamic survey of the fundamental backgrounds of concentration dependence and experimental solubility results show some peculiar behavior of aqueous solutions with several types of similar solutes. Secondly, the use of a variety of experimental spectroscopic devices, operating under different experimental conditions of dimension and frequency, has produced a large amount of structural and dynamic data on aqueous solutions showing the richness of the information produced, depending on where and how the experiment is carried out. Finally, the use of molecular dynamics computational work is presented to highlight how the different types of solute functional groups and surface topologies organize adjacent water molecules differently. The highly valuable contribution of computer simulation studies in providing molecular explanations for experimental deductions, either of a thermodynamic or spectroscopic nature, is shown to have changed the current knowledge of many aqueous solution processes. While this paper is intended to provide a collective view on the latest literature results, still the presentation aims at a tutorial explanation of the potentials of the three methodologies in the field of aqueous solutions of pharmaceutical molecules.

摘要

通过热力学、光谱和分子动力学模拟三种视角,阐述了模型化合物水溶液的物理化学性质与水合和溶解度问题的关系。通过对浓度依赖性和实验溶解度结果基本背景的热力学调查,展示了具有几种类似溶质的水溶液的一些特殊行为。其次,使用多种实验光谱设备,在不同维度和频率的实验条件下运行,得到了大量关于水溶液的结构和动态数据,这些数据表明,实验的进行地点和方式对信息的丰富程度有很大的影响。最后,使用分子动力学计算工作来突出不同类型的溶质官能团和表面拓扑结构如何不同地组织相邻的水分子。计算模拟研究在为实验推断提供分子解释方面做出了非常有价值的贡献,无论是热力学性质还是光谱性质,这都改变了人们对许多水溶液过程的现有认识。虽然本文旨在提供对最新文献结果的综合看法,但仍旨在以教程的方式解释这三种方法在药物分子水溶液领域的潜力。

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