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Comprehensive approach for predicting toxicological effects of ionic liquids on several biological systems using unified descriptors

机译:使用统一描述符预测离子液体对几种生物系统的毒理作用的综合方法

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摘要

The challenge and opportunity for design of environmentally-benign ionic liquids (ILs) would start from prediction of their toxicological effects on several endpoints solely based on the structural formulas. Especially, a comprehensive yet simple equation able to predict several biological responses to IL toxicity is of much advantage. Therefore, based on 50 toxicity testing systems on ILs a comprehensively approachable prediction method was developed. For the modelling, approximately 1600 toxicity values measured by several biological systems and an amended linear free energy relationship (LFER) model were used. Since the toxicological activities of an IL could be differently described according to sensitivity of toxicity testing systems, the sensitivity of each of toxicity testing systems was also estimated in the modelling. By statistical analysis with the calculated descriptors, a LFER model was built. Also the sensitivity value of each system on the basis of the comprehensively approachable model was numerically estimated. In results, it was observed that the combination of single model and sensitivity terms was able to predict each of 50 toxicological effects of ILs with R2 of 0.593~0.978, and SE of 0.098~0.699 log unit, and the total data set with R2 of 0.901 and SE of 0.426 log unit.
机译:设计对环境无害的离子液体(IL)的挑战和机遇将从仅基于结构式预测它们对几个终点的毒理作用开始。尤其是,能够预测几种对IL毒性的生物学反应的综合而简单的方程式非常有用。因此,基于50种ILs毒性测试系统,开发了一种全面可接近的预测方法。为了进行建模,使用了几种生物系统测得的大约1600毒性值和修正的线性自由能关系(LFER)模型。由于可以根据毒性测试系统的敏感性来不同地描述IL的毒理学活性,因此在建模中还估算了每种毒性测试系统的敏感性。通过使用计算出的描述符进行统计分析,建立了LFER模型。此外,在综合可接近模型的基础上,还对每个系统的灵敏度值进行了数值估算。结果发现,单一模型和敏感度项的组合能够预测IL的50种毒理作用,R 2 为0.593〜0.978,SE为0.098〜0.699 log unit,且总数据集的R 2 为0.901,SE为0.426 log单位。

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