Biostatistics and Computational Biology Branch, The National Institute of Environmental Health Sciences, National Institutes of Health, 111 T. W. Alexander Drive, Research Triangle Park, NC 27709, USA.
Sci Rep. 2016 Jun 15;6:27897. doi: 10.1038/srep27897.
High-throughput in vitro screening experiments can be used to generate concentration-response data for large chemical libraries. It is often desirable to estimate the concentration needed to achieve a particular effect, or potency, for each chemical tested in an assay. Potency estimates can be used to directly compare chemical profiles and prioritize compounds for confirmation studies, or employed as input data for prediction modeling and association mapping. The concentration for half-maximal activity derived from the Hill equation model (i.e., AC50) is the most common potency measure applied in pharmacological research and toxicity testing. However, the AC50 parameter is subject to large uncertainty for many concentration-response relationships. In this study we introduce a new measure of potency based on a weighted Shannon entropy measure termed the weighted entropy score (WES). Our potency estimator (Point of Departure, PODWES) is defined as the concentration producing the maximum rate of change in weighted entropy along a concentration-response profile. This approach provides a new tool for potency estimation that does not depend on the assumption of monotonicity or any other pre-specified concentration-response relationship. PODWES estimates potency with greater precision and less bias compared to the conventional AC50 assessed across a range of simulated conditions.
高通量体外筛选实验可用于生成大型化学文库的浓度-反应数据。通常,需要估计在测定中测试的每种化学物质达到特定效果或效价所需的浓度。效价估计值可用于直接比较化学特征,并为确认研究确定化合物的优先级,或用作预测建模和关联映射的输入数据。Hill 方程模型得出的半最大活性浓度(即 AC50)是药理学研究和毒性测试中最常用的效价测量方法。然而,对于许多浓度-反应关系,AC50 参数存在很大的不确定性。在这项研究中,我们引入了一种基于加权 Shannon 熵度量的新效价度量,称为加权熵得分(WES)。我们的效价估计器(起点,PODWES)定义为在浓度-反应曲线中产生加权熵最大变化率的浓度。这种方法提供了一种新的效价估计工具,它不依赖于单调或任何其他预定的浓度-反应关系的假设。与在各种模拟条件下评估的传统 AC50 相比,PODWES 以更高的精度和更小的偏差估计效价。