An automated fitting procedure and software for dose-response curves with multiphasic features.
An automated fitting procedure and software for dose-response curves with multiphasic features.
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DOI:
10.1038/srep14701
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发表时间:
2015-10-01
影响因子:
4.6
通讯作者:
Jodrell DI
中科院分区:
文献类型:
--
作者:
Di Veroli GY;Fornari C;Goldlust I;Mills G;Koh SB;Bramhall JL;Richards FM;Jodrell DI
In cancer pharmacology (and many other areas), most dose-response curves are satisfactorily described by a classical Hill equation (i.e. 4 parameters logistical). Nevertheless, there are instances where the marked presence of more than one point of inflection, or the presence of combined agonist and antagonist effects, prevents straight-forward modelling of the data via a standard Hill equation. Here we propose a modified model and automated fitting procedure to describe dose-response curves with multiphasic features. The resulting general model enables interpreting each phase of the dose-response as an independent dose-dependent process. We developed an algorithm which automatically generates and ranks dose-response models with varying degrees of multiphasic features. The algorithm was implemented in new freely available Dr Fit software (sourceforge.net/projects/drfit/). We show how our approach is successful in describing dose-response curves with multiphasic features. Additionally, we analysed a large cancer cell viability screen involving 11650 dose-response curves. Based on our algorithm, we found that 28% of cases were better described by a multiphasic model than by the Hill model. We thus provide a robust approach to fit dose-response curves with various degrees of complexity, which, together with the provided software implementation, should enable a wide audience to easily process their own data.