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二氧化氮在小鼠亚硝胺生物合成中的作用。

Role of nitrogen dioxide in the biosynthesis of nitraosamines in mice.

作者信息

Iqbal Z M, Dahl K, Epstein S S

出版信息

Science. 1980 Mar 28;207(4438):1475-7. doi: 10.1126/science.7361099.

Abstract

Groups of three to four mice were gavaged with aqueous solutions of 2 milligrams of morpholine, after which they were exposed to nitrogen dioxide in inhalation chambers at concentrations of 0.2 to 50 parts per million for up to 4 hours. At sequential intervals during the exposure, mice were frozen and pulverized in liquid nitrogen, and the mice powder was extracted with ice-cold 35 percent aqueous methanol and dichloromethane; organic-phase concentrates were analyzed for N-nitrosomorpholine with a thermal energy analyzer interfaced to a gas chromatograph. The N-nitrosomorpholine yields, ranging up to about 2.3 micrograms per mouse, were time-dependent relative to the duration of exposure to nitrogen dioxide and dose-dependent relative to the concentrations of nitrogen dioxide; control levels (in mice that were gavaged with morpholine or distilled water and then exposed to air instead of nitrogen dioxide) were less than 5 nanograms per mouse. These preliminary studies demonstrate the in vivo nitrosating potential of nitrogen oxides.

摘要

将三到四只小鼠分为一组,用2毫克吗啉的水溶液进行灌胃,之后将它们置于吸入室中,暴露于浓度为百万分之0.2至50的二氧化氮环境中,最长暴露4小时。在暴露过程中的连续时间间隔,将小鼠在液氮中冷冻并研磨成粉末,小鼠粉末用冰冷的35%甲醇水溶液和二氯甲烷进行萃取;有机相浓缩物用与气相色谱仪连接的热能分析仪分析N-亚硝基吗啉。N-亚硝基吗啉的产量最高可达每只小鼠约2.3微克,相对于二氧化氮暴露持续时间呈时间依赖性,相对于二氧化氮浓度呈剂量依赖性;对照组水平(用吗啉或蒸馏水灌胃然后暴露于空气而非二氧化氮的小鼠)低于每只小鼠5纳克。这些初步研究证明了氮氧化物的体内亚硝化潜力。

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