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The Metabolism and Toxicity of Quinones, Quinonimines, Quinone Methides, and Quinone-Thioethers

机译:醌,醌胺,甲基苯醌和醌-硫醚的代谢和毒性

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摘要

Quinones are ubiquitous in nature and constitute an important class of naturally occurring compounds found in plants, fungi and bacteria. Human exposure to quinones therefore occurs via the diet, but also clinically or via airborne pollutants. For example, the quinones of polycyclic aromatic hydrocarbons are prevalent as environmental contaminants and provide a major source of current human exposure to quinones. The inevitable human exposure to quinones, and the inherent reactivity of quinones, has stimulated substantial research on the chemistry and toxicology of these compounds. From a toxicological perspective, quinones possess two principal chemical properties that confer their reactivity in biological systems. Quinones are oxidants and electrophiles, and the relative contribution of these properties to quinone toxicity is influenced by chemical structure, in particular substituent effects. Modification to the quinone nucleus also influences quinone metabolism. This review will therefore focus on the differences in structure and metabolism of quinones, and how such differences influence quinone toxicology. Specific examples will be discussed to illustrate the diverse manner by which quinones interact with biological systems to initiate and propagate a toxic response.
机译:醌在自然界无处不在,构成在植物,真菌和细菌中发现的一类重要的天然化合物。因此,人类不仅通过饮食接触醌,而且在临床上或通过空气传播的污染物接触。例如,多环芳烃的醌普遍作为环境污染物,并提供了当前人类暴露于醌的主要来源。人类不可避免地暴露于醌类,以及醌类固有的反应性,已激发了对这些化合物的化学和毒理学的实质性研究。从毒理学的角度看,醌具有两个主要化学性质,赋予它们在生物系统中的反应性。醌是氧化剂和亲电子试剂,这些性质对醌毒性的相对贡献受化学结构,特别是取代基效应的影响。醌核的修饰也影响醌代谢。因此,本综述将重点关注醌的结构和代谢差异,以及这些差异如何影响醌毒理学。将讨论具体的例子以说明醌与生物系统相互作用以引发和传播毒性反应的不同方式。

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