DIFACQUIM Research Group, Department of Pharmacy, School of Chemistry, Universidad Nacional Autónoma de México, Mexico City, Mexico.
Expert Opin Drug Discov. 2022 Jul;17(7):789-798. doi: 10.1080/17460441.2022.2084608. Epub 2022 Jun 5.
Chemical space is a general conceptual framework that addresses the diversity of molecules and it has various applications. Moreover, chemical space is a cornerstone of chemoinformatics. In response to the increase in the set of chemical compounds in databases, generators of chemical structures, and tools to calculate molecular descriptors, novel approaches to generate visual representations of chemical space are emerging and evolving.
The current state of chemical space in drug design and discovery is reviewed. The topics discussed herein include advances for efficient navigation in chemical space, the use of this concept in assessing the diversity of different data sets, exploring structure-property/activity relationships for one or multiple endpoints, and compound library design. Recent advances in methodologies for generating visual representations of chemical space have been highlighted, thereby emphasizing open-source methods.
Quantitative and qualitative generation and analysis of chemical space require novel approaches for handling the increasing number of molecules and their information available in chemical databases (including emerging ultra-large libraries). Chemical space is a conceptual framework that goes beyond visual representation in low dimensions. However, the graphical representation of chemical space has several practical applications in drug discovery and beyond.
化学空间是一个通用的概念框架,用于解决分子多样性问题,它有多种应用。此外,化学空间是 chemoinformatics 的基石。为了应对数据库中化合物集合、化学结构生成器以及分子描述符计算工具的增加,新的生成化学空间可视化表示的方法正在不断涌现和发展。
本文综述了药物设计和发现中化学空间的现状。本文讨论的主题包括在化学空间中高效导航的进展,该概念在评估不同数据集多样性、探索一个或多个终点的结构-性质/活性关系以及化合物库设计中的应用。本文还强调了开源方法,突出了化学空间可视化表示方法的最新进展。
化学空间的定量和定性生成和分析需要新的方法来处理化学数据库中越来越多的分子及其信息(包括新兴的超大库)。化学空间是一个超越低维可视化表示的概念框架。然而,化学空间的图形表示在药物发现及其他领域有几个实际应用。