Rational Drug Design: One Target, Many Paths to It

K. Barakat, M. Houghton, D. Tyrrel, J. Tuszynski
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引用次数: 7

Abstract

For the past three decades rationale drug design (RDD) has been developing as an innovative, rapid and successful way to discover new drug candidates. Many strategies have been followed and several targets with diverse structures and different biological roles have been investigated. Despite the variety of computational tools available, one can broadly divide them into two major classes that can be adopted either separately or in combination. The first class involves structure-based drug design, when the target’s 3-dimensional structure is available or it can be computationally generated using homology modeling. On the other hand, when only a set of active molecules is available, and the structure of the target is unknown, ligand-based drug design tools are usually used. This review describes some recent advances in rational drug design, summarizes a number of their practical applications, and discusses both the advantages and shortcomings of the various techniques used. Rational Drug Design: One Target, Many Paths to It
合理药物设计:一个目标,多种途径
在过去的三十年中,基本原理药物设计(RDD)作为一种创新、快速和成功的发现新候选药物的方法得到了发展。人们采用了多种策略,研究了具有不同结构和不同生物学作用的靶点。尽管可用的计算工具种类繁多,但可以将它们大致分为两大类,可以单独使用,也可以组合使用。第一类涉及基于结构的药物设计,当目标的三维结构可用或可以使用同源建模计算生成时。另一方面,当只有一组活性分子可用,并且靶标结构未知时,通常使用基于配体的药物设计工具。本文介绍了合理药物设计的一些最新进展,总结了它们的一些实际应用,并讨论了所使用的各种技术的优点和缺点。合理药物设计:一个目标,多种途径
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