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基于机制的相互作用预测。

Mechanism-based predictions of interactions.

作者信息

Oesch F, Oesch-Bartlomowicz B, Arens J, Fähndrich F, Vogel E, Friedberg T, Glatt H

机构信息

Institute of Toxicology, University of Mainz, Germany.

出版信息

Environ Health Perspect. 1994 Nov;102 Suppl 9(Suppl 9):5-9. doi: 10.1289/ehp.94102s95.

Abstract

Exposure to more than one toxic compound is common in real life. The resulting toxic effects are often more than the simple sum of the effects of the individual compounds. It is unlikely that it will ever be possible to test all combinations. It is therefore highly desirable to improve or develop means for reasonably approximating predictions of interactions. In order to be valid and extrapolatable, these predictions are most promising if they are mechanism-based. Examples will be given for possibilities of mechanism-based predictions of interactions which exceed trivialities of simple increases by enzyme induction of enzymatic rates of a given biotransformation pathway leading to a toxic metabolite. Instead, examples will be provided where competition between various enzymes for shunting the same substrate into divergent pathways can lead to predictable dramatic changes in toxicity by shifting the metabolic routes under conditions of no significant changes of overall metabolism. Further examples are given on predictable interactions between chemicals which need bioactivation for exerting their toxicity and chemicals which effect hormonal status and other endogenous factors which in turn modify enzymes involved in the control of toxic metabolites.

摘要

在现实生活中,接触多种有毒化合物的情况很常见。由此产生的毒性效应往往不止是各单一化合物效应的简单相加。对所有化合物组合进行测试不太可能实现。因此,非常有必要改进或开发合理近似相互作用预测的方法。为了使这些预测有效且可外推,如果基于机制则最具前景。将给出基于机制的相互作用预测可能性的示例,这些预测超越了通过酶诱导给定生物转化途径的酶促速率以增加有毒代谢物而导致简单增加的琐碎情况。相反,将提供一些示例,说明在总体代谢无显著变化的情况下,各种酶之间竞争将同一底物分流到不同途径时,如何通过改变代谢途径导致毒性发生可预测的显著变化。还将给出更多示例,说明需要生物活化才能发挥毒性的化学物质与影响激素状态及其他内源性因素的化学物质之间的可预测相互作用,而这些内源性因素又会反过来改变参与控制有毒代谢物的酶。

相似文献

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Mechanism-based predictions of interactions.基于机制的相互作用预测。
Environ Health Perspect. 1994 Nov;102 Suppl 9(Suppl 9):5-9. doi: 10.1289/ehp.94102s95.

本文引用的文献

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Phosphorylation of cytochrome P450: regulation by cytochrome b5.细胞色素P450的磷酸化:由细胞色素b5调控
Arch Biochem Biophys. 1989 Jun;271(2):424-32. doi: 10.1016/0003-9861(89)90292-0.

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