Kong Maiying, Lee J Jack
Department of Bioinformatics and Biostatistics, School of Public Health and Information Sciences, University of Louisville, Louisville, Kentucky 40292, USA.
Front Biosci (Elite Ed). 2010 Jan 1;2(1):279-92. doi: 10.2741/e90.
We review the semiparametric approach previously proposed by Kong and Lee and extend it to a case in which the dose-effect curves follow the Emax model instead of the median effect equation. When the maximum effects for the investigated drugs are different, we provide a procedure to obtain the additive effect based on the Loewe additivity model. Then, we apply a bivariate thin plate spline approach to estimate the effect beyond additivity along with its 95 per cent point-wise confidence interval as well as its 95 per cent simultaneous confidence interval for any combination dose. Thus, synergy, additivity, and antagonism can be identified. The advantages of the method are that it provides an overall assessment of the combination effect on the entire two-dimensional dose space spanned by the experimental doses, and it enables us to identify complex patterns of drug interaction in combination studies. In addition, this approach is robust to outliers. To illustrate this procedure, we analyzed data from two case studies.
我们回顾了Kong和Lee先前提出的半参数方法,并将其扩展到剂量效应曲线遵循Emax模型而非中位效应方程的情况。当所研究药物的最大效应不同时,我们提供了一种基于Loewe加和性模型获得加性效应的方法。然后,我们应用双变量薄板样条方法来估计超出加性效应的效应及其95%的逐点置信区间以及针对任何联合剂量的95%的同时置信区间。由此,可以识别协同、加性和拮抗作用。该方法的优点在于它能对实验剂量所跨越的整个二维剂量空间上的联合效应进行全面评估,并且使我们能够在联合研究中识别复杂的药物相互作用模式。此外,这种方法对异常值具有鲁棒性。为了说明该过程,我们分析了两个案例研究的数据。