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生物转化和生物活化在毒性中的作用。

The role of biotransformation and bioactivation in toxicity.

作者信息

Dekant Wolfgang

机构信息

Department of Toxicology, University of Würzburg, Würzburg, Germany.

出版信息

EXS. 2009;99:57-86. doi: 10.1007/978-3-7643-8336-7_3.

Abstract

Biotransformation is essential to convert lipophilic chemicals to water-soluble and readily excretable metabolites. Formally, biotransformation reactions are classified into phase I and phase II reactions. Phase I reactions represent the introduction of functional groups, whereas phase II reactions are conjugations of such functional groups with endogenous, polar products. Biotransformation also plays an essential role in the toxicity of many chemicals due to the metabolic formation of toxic metabolites. These may be classified as stable but toxic products, reactive electrophiles, radicals, and reactive oxygen metabolites. The interaction of toxic products formed by biotransformation reactions with cellular macromolecules initiates the sequences resulting in cellular damage, cell death and toxicity.

摘要

生物转化对于将亲脂性化学物质转化为水溶性且易于排泄的代谢产物至关重要。形式上,生物转化反应分为I相反应和II相反应。I相反应代表官能团的引入,而II相反应是此类官能团与内源性极性产物的结合。由于有毒代谢产物的代谢形成,生物转化在许多化学物质的毒性中也起着至关重要的作用。这些可分为稳定但有毒的产物、活性亲电试剂、自由基和活性氧代谢产物。生物转化反应形成的有毒产物与细胞大分子的相互作用引发了导致细胞损伤、细胞死亡和毒性的一系列反应。

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