de Julian-Ortiz J V
Unidad de Investigación de Diseño de Fármacosy Conectividad Molecular, Facultad de Farmacia, Universitat de València, Spain.
Comb Chem High Throughput Screen. 2001 May;4(3):295-310. doi: 10.2174/1386207013331129.
The generation of diversity and its further selection by an external system is a common mechanism for the evolution of the living species and for the current drug design methods. This assumption allows us to label the methods based on generation and selection of molecular diversity as "Darwinian" ones, and to distinguish them from the structure-based, structure-modulation approaches. An example of a Darwinian method is the inverse QSAR. It consists of the computational generation of candidate chemical structures and their selection according to a previously established QSAR model. New trends in the field of combinatorial chemical syntheses comprise the concepts of virtual combinatorial synthesis and virtual or computational screening. Virtual combinatorial synthesis, closely related to inverse QSAR, can be defined as the computational simulation of the generation of new chemical structures by using a combinatorial strategy to generate a virtual library. Virtual screening is the selection of chemical structures having potential desirable properties from a database or virtual library in order to be synthesized and assayed. This review is mainly focused on graph theoretical drug design approaches, but a survey with key references is provided that covers other simulation methods.
多样性的产生及其由外部系统进行的进一步筛选,是生物物种进化和当前药物设计方法的常见机制。这一假设使我们能够将基于分子多样性的产生和筛选的方法标记为“达尔文式”方法,并将它们与基于结构、结构调制的方法区分开来。达尔文式方法的一个例子是反向定量构效关系(inverse QSAR)。它包括候选化学结构的计算生成及其根据先前建立的QSAR模型进行的筛选。组合化学合成领域的新趋势包括虚拟组合合成以及虚拟或计算筛选的概念。与反向定量构效关系密切相关的虚拟组合合成,可以定义为通过使用组合策略生成虚拟库来对新化学结构的生成进行计算模拟。虚拟筛选是从数据库或虚拟库中选择具有潜在理想特性的化学结构,以便进行合成和检测。本综述主要关注图论药物设计方法,但也提供了涵盖其他模拟方法的关键参考文献的调查。