Hasselgren Catrin, Myatt Glenn J
PureInfo Discovery Inc., Albuquerque, NM, USA.
Leadscope Inc., Columbus, OH, USA.
Methods Mol Biol. 2018;1800:233-244. doi: 10.1007/978-1-4939-7899-1_11.
The use of computational toxicology methods within drug discovery began in the early 2000s with applications such as predicting bacterial mutagenicity and hERG inhibition. The field has been continuously expanding ever since and the tasks at hand have become more complex. These approaches are now strategically integrated into the risk assessment process, as a complement to in vitro and in vivo methods. Today, computational toxicology can be used in every phase of drug discovery and development, from profiling large libraries early on, to predicting off-target effects in the mid-discovery phase, to assessing potential mutagenic impurities in development and degradants as part of life-cycle management. This chapter provides an overview of the field and describes the application of computational toxicology throughout the entire discovery and development process.
药物研发中计算毒理学方法的应用始于21世纪初,例如用于预测细菌致突变性和人醚 - 去极化钾通道(hERG)抑制作用等。从那时起,该领域一直在不断扩展,手头的任务也变得更加复杂。如今,这些方法已被战略性地整合到风险评估过程中,作为体外和体内方法的补充。如今,计算毒理学可用于药物研发和开发的各个阶段,从早期对大型文库进行分析,到发现中期预测脱靶效应,再到作为生命周期管理的一部分评估开发过程中的潜在诱变杂质和降解产物。本章概述了该领域,并描述了计算毒理学在整个发现和开发过程中的应用。