Computer methods for the assessment of toxicity.

S Wold, S Hellberg, W J Dunn
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引用次数: 11

Abstract

The prediction of the biological activity of chemical compounds by means of mathematical models is discussed. Biological activity of chemicals, including their toxicity on man and other biological organisms and systems, involves too complex phenomena to presently be predictable by fundamental models such as ab initio quantum mechanical models or statistical mechanical models. Hence one takes recourse to semi-empirical and empirical models which relate the variation in chemical structure of chemical compounds to the variation in their measured biological activity, e.g. toxicity in one or several test systems. These models are "calibrated" on series of similar compounds with "known" toxicity, the training set. Thereafter the models can--in fortunate cases--be used to predict the toxicity of compounds which are structurally similar to the training set compounds. The formulation and applicability of semi-empirical and empirical models relating chemical structure to biological activity is discussed. Causes and remedies for commonly encountered fallacies are presented.

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毒性评定的计算机方法。
讨论了用数学模型预测化合物生物活性的方法。化学物质的生物活性,包括它们对人类和其他生物有机体和系统的毒性,涉及的现象过于复杂,目前无法用从头算量子力学模型或统计力学模型等基本模型来预测。因此,人们求助于半经验和经验模型,这些模型将化合物的化学结构的变化与其测量的生物活性的变化联系起来,例如,在一个或几个测试系统中的毒性。这些模型是根据一系列具有“已知”毒性的类似化合物(训练集)进行“校准”的。此后,在幸运的情况下,这些模型可以用来预测结构上与训练集化合物相似的化合物的毒性。讨论了化学结构与生物活性相关的半经验模型和经验模型的形成及其适用性。提出了常见谬误的原因和补救方法。
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