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A mechanism-mediated model for carcinogenicity: model content and prediction of the outcome of rodent carcinogenicity bioassays currently being conducted on 25 organic chemicals.

机译:机制介导的致癌性模型:目前正在对25种有机化学物质进行啮齿动物致癌性生物测定的模型内容和结果预测。

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摘要

A hierarchical model consisting of quantitative structure-activity relationships based mainly on chemical reactivity was developed to predict the carcinogenicity of organic chemicals to rodents. The model is comprised of quantitative structure-activity relationships, QSARs based on hypothesized mechanisms of action, metabolism, and partitioning. Predictors included octanol/water partition coefficient, molecular size, atomic partial charge, bond angle strain, atomic acceptor delocalizibility, atomic radical superdelocalizibility, the lowest unoccupied molecular orbital (LUMO) energy of hypothesized intermediate nitrenium ion of primary aromatic amines, difference in charge of ionized and unionized carbon-chlorine bonds, substituent size and pattern on polynuclear aromatic hydrocarbons, the distance between lone electron pairs over a rigid structure, and the presence of functionalities such as nitroso and hydrazine. The model correctly classified 96% of the carcinogens in the training set of 306 chemicals, and 90% of the carcinogens in the test set of 301 chemicals. The test set by chance contained 84% of the positive thio-containing chemicals. A QSAR for these chemicals was developed. This posttest set modified model correctly predicted 94% of the carcinogens in the test set. This model was used to predict the carcinogenicity of the 25 organic chemicals the U.S. National Toxicology Program was testing at the writing of this article.
机译:建立了一个主要基于化学反应性的,由定量构效关系构成的分层模型,以预测有机化学物质对啮齿动物的致癌性。该模型由定量的构效关系,基于假设的作用机理,代谢和分配的QSAR组成。预测因素包括辛醇/水分配系数,分子大小,原子部分电荷,键角应变,原子受体可离域性,原子自由基超可离域性,假定的初级芳族胺中间氮离子的最低未占据分子轨道(LUMO)能量,电荷的差异电离和工会化的碳-氯键,多核芳烃上的取代基尺寸和样式,刚性结构上单个电子对之间的距离以及亚硝基和肼等官能团的存在。该模型将306种化学物质的训练集中96%的致癌物正确分类,而301种化学物质的测试集中将90%的致癌物正确分类。该测试集偶然包含了84%的正含硫化学品。已经开发了针对这些化学品的QSAR。此测试后修改集模型可以正确预测测试集中94%的致癌物。在撰写本文时,该模型用于预测美国国家毒理学计划正在测试的25种有机化学品的致癌性。

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