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Role of Solvation in Drug Design as Revealed by the Statistical Mechanics Integral Equation Theory of Liquids

机译:溶液在药物设计中的作用如液体统计力学整体方程理论透露

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摘要

Recent developments and applications in theoretical methods focusing on drug design and particularly on the solvent effect in molecular recognition based on the three-dimensional reference interaction site model (3D-RISM) theory are reviewed. Molecular recognition, a fundamental molecular process in living systems, is known to be the functional mechanism of most drugs. Solvents play an essential role in molecular recognition processes as well as in ligand protein interactions. The 3D-RISM theory is derived from the fundamental statistical mechanics theory, which reproduces all solvation thermodynamics naturally and has some advantages over conventional solvation methods, such as molecular simulation and the continuum model. Here, we review the basics of the 3D-RISM theory and methods of molecular recognition in its applications toward drug design.
机译:综述了对药物设计的理论方法的最新的发展和应用,特别是在基于三维参考相互作用站点(3D-Rism)理论的分子识别中的溶剂效应。 分子识别,生命系统中的基本分子过程,已知是大多数药物的功能机制。 溶剂在分子识别过程以及配体蛋白质相互作用中起重要作用。 3D-RISM理论源自基本统计力学理论,其自然地再现了所有溶剂化热力学,并具有与常规溶剂化方法相比的一些优势,例如分子模拟和连续体模型。 在这里,我们审查了3D-RISM理论的基础知识和分子识别方法对药物设计的应用方法。

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