Taros Chemicals GmbH & Co. KG, Emil-Figge-Str. 76a, 44227 Dortmund, Germany.
BioSolveIT GmbH, An der Ziegelei 79, 53757 Sankt Augustin, Germany.
Drug Discov Today. 2019 May;24(5):1148-1156. doi: 10.1016/j.drudis.2019.02.013. Epub 2019 Mar 7.
Recent innovations have brought pharmacophore-driven methods for navigating virtual chemical spaces, the size of which can reach into the billions of molecules, to the fingertips of every chemist. There has been a paradigm shift in the underlying computational chemistry that drives chemical space search applications, incorporating intelligent reaction knowledge into their core so that they can readily deliver commercially available molecules as nearest neighbor hits from within giant virtual spaces. These vast resources enable medicinal chemists to execute rapid scaffold-hopping experiments, rapid hit expansion, and structure-activity relationship (SAR) exploitation in largely intellectual property (IP)-free territory and at unparalleled low cost.
最近的创新使得基于药效团的方法能够在虚拟化学空间中进行导航,这个空间的大小可以达到数十亿分子,每个化学家都可以轻松使用。在驱动化学空间搜索应用的基础计算化学方面发生了范式转变,将智能反应知识纳入其核心,以便它们能够从巨大的虚拟空间中轻松提供商业上可用的分子作为最近邻命中。这些巨大的资源使药物化学家能够在基本上没有知识产权 (IP) 的领域并以无与伦比的低成本执行快速支架跳跃实验、快速命中扩展和构效关系 (SAR) 开发。