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Additive Dose Response Models: Explicit Formulation and the Loewe Additivity Consistency Condition

机译:加性剂量反应模型:明确的公式和Loewe可加性一致性条件

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High-throughput techniques allow for massive screening of drug combinations. To find combinations that exhibit an interaction effect, one filters for promising compound combinations by comparing to a response without interaction. A common principle for no interaction is Loewe Additivity which is based on the assumption that no compound interacts with itself and that two doses from different compounds having the same effect are equivalent. It then should not matter whether a component is replaced by the other or vice versa. We call this assumption the Loewe Additivity Consistency Condition (LACC). We derive explicit and implicit null reference models from the Loewe Additivity principle that are equivalent when the LACC holds. Of these two formulations, the implicit formulation is the known General Isobole Equation (Loewe, 1928 ), whereas the explicit one is the novel contribution. The LACC is violated in a significant number of cases. In this scenario the models make different predictions. We analyze two data sets of drug screening that are non-interactive (Cokol et al., 2011 ; Yadav et al., 2015 ) and show that the LACC is mostly violated and Loewe Additivity not defined. Further, we compare the measurements of the non-interactive cases of both data sets to the theoretical null reference models in terms of bias and mean squared error. We demonstrate that the explicit formulation of the null reference model leads to smaller mean squared errors than the implicit one and is much faster to compute.
机译:高通量技术可对药物组合进行大规模筛选。为了找到表现出相互作用作用的组合,可以通过与没有相互作用的响应进行比较来筛选有希望的化合物组合。 Loewe Additivity是不发生相互作用的常见原理,它基于以下假设:没有化合物与其自身相互作用,并且来自具有相同作用的不同化合物的两次剂量是等效的。然后,一个组件是否被另一个组件替换,反之亦然。我们将此假设称为Loewe可加性一致性条件(LACC)。我们从Loewe Additivity原理导出显式和隐式空引用模型,这些模型在LACC成立时等效。在这两种公式中,隐式公式是已知的一般Isobole方程(Loewe,1928),而显式公式是新颖的贡献。在很多情况下,都会违反LACC。在这种情况下,模型会做出不同的预测。我们分析了两个非交互性的药物筛选数据集(Cokol等人,2011; Yadav等人,2015),并显示大部分违反了LACC,未定义Loewe可加性。此外,我们将两个数据集的非交互情况的测量结果与理论上的零参考模型进行了比较,包括偏差和均方误差。我们证明,与隐式参考模型相比,空参考模型的显式公式产生的均方误差较小,并且计算速度更快。

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