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Hemoglobin binding of arylamines and nitroarenes: molecular dosimetry and quantitative structure-activity relationships.

机译:血红蛋白结合的芳基胺和硝基芳烃:分子剂量和定量构效关系。

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摘要

N-Oxidation and nitroreduction to yield N-hydroxyarylamines are metabolic steps that are crucial for the genotoxic properties of aromatic amines and nitroarenes, respectively. N-Hydroxyarylamines can form adducts with DNA, tissue proteins, and the blood proteins albumin and hemoglobin in a dose-dependent manner. The determination of hemoglobin adducts is a useful tool for biomonitoring exposed populations. We have established the hemoglobin binding index (HBI) [(mmole compound/mole Hb)/(mmole compound/kg body weight)] of several aromatic amines and nitroarenes in female Wistar rats. Incorporating values obtained by other researchers in the same rat strain, the logarithm of hemoglobin binding (log HBI) was plotted against several physicochemical parameters and against calculated electronic descriptors of nitroarenes and arylamines. Most arylamines and nitroarenes form hydrolyzable (e.g., sulfinamide) adducts with hemoglobin in rats. The amount of hemoglobin binding decreases with the oxidizability of the arylamines, except for compounds that are substituted with halogens in ortho or meta position. For halogen-substituted arylamines, the amount of hemoglobin binding is directly proportional to the pKa. Hemoglobin binding of nitroarenes increases with the reducibility of the nitro group. The structure activity relationships (SAR) for hemoglobin binding of nitroarenes and arylamines are comparable. The SAR found for hemoglobin binding were compared with the SAR found in the literature for mutagenicity, carcinogenicity, and cytotoxicity of arylamines and nitroarenes. In general, the mutagenicity or carcinogenicity of arylamines increases with their oxidizability. This first set of data suggests that the levels of hemoglobin binding, mutagenicity, and carcinogenicity of arylamines are not determined by the same electronic properties of the compounds, or not by these properties alone.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:N-氧化和硝基还原生成N-羟基芳基胺是代谢步骤,分别对芳族胺和硝基芳烃的遗传毒性至关重要。 N-羟基芳基胺可以与DNA,组织蛋白以及血液蛋白白蛋白和血红蛋白形成剂量依赖性的加合物。血红蛋白加合物的测定是生物监测暴露人群的有用工具。我们已经建立了雌性Wistar大鼠体内几种芳香胺和硝基芳烃的血红蛋白结合指数(HBI)[((mmol化合物/摩尔Hb)/(mmol化合物/ kg体重)]。结合其他研究人员在同一大鼠品系中获得的值,将血红蛋白结合的对数(log HBI)针对几个理化参数以及针对硝基芳烃和芳胺的计算电子描述符进行绘制。大多数芳胺和硝基芳烃与大鼠的血红蛋白形成可水解的(例如亚磺酰胺)加合物。除在邻位或间位被卤素取代的化合物外,血红蛋白结合量随芳基胺的氧化性而降低。对于卤素取代的芳基胺,血红蛋白结合量与pKa成正比。硝基芳烃的血红蛋白结合随着硝基的还原性而增加。硝基芳烃和芳胺的血红蛋白结合的结构活性关系(SAR)是可比的。将结合血红蛋白的SAR与文献中发现的SAR的芳胺和硝基芳烃的致突变性,致癌性和细胞毒性进行了比较。通常,芳基胺的致突变性或致癌性随其氧化性而增加。第一组数据表明,芳基胺的血红蛋白结合水平,诱变性和致癌性不是由化合物的相同电子性质决定的,也不是由这些性质单独决定的。(摘要截断为250字)

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