Kim Y A, Lee H S, Park Y C, Lee Y T
Department of Food Science and Nutrition, Kyungpook National University, Taegu 702-701, Republic of Korea.
Environ Res. 2000 Nov;84(3):303-9. doi: 10.1006/enrs.2000.4099.
Since organophosphorus pesticides can be oxidized to oxons in vivo and in the environment and their determination based on inhibition of cholinesterases can be more sensitive after their oxidation to oxons, development of an efficient method for their in vitro oxidation is important for their toxicological and analytical studies. This study demonstrated that treatment of organophosphorus pesticides with 10 molar excess bromine in acetonitrile is a rapid and efficient method for their oxidation. For the nine organophosphorus pesticides tested, the reaction was complete within a few seconds. All reactions gave the respective oxons as single major product, except that of fenthion, which gave two major products, the respective oxon and another product from further oxidation of the oxon. The yields of the oxons were 82-100%. The inhibitory power of the pesticides on acetylcholinesterase before and after oxidation was measured and, for all pesticides tested, the power after oxidation was much higher than that before oxidation. Inhibition calibration curves for both unoxidized and oxidized forms of fenitrothion and parathion were obtained. The sensitivity of the detection of these pesticides was much higher after oxidation.
由于有机磷农药在体内和环境中可被氧化为氧磷,且基于抑制胆碱酯酶对其进行测定在氧化为氧磷后可能更灵敏,因此开发一种有效的体外氧化方法对其毒理学和分析研究具有重要意义。本研究表明,在乙腈中用10摩尔过量的溴处理有机磷农药是一种快速有效的氧化方法。对于所测试的9种有机磷农药,反应在几秒钟内即可完成。除倍硫磷外,所有反应均以各自的氧磷作为单一主要产物,倍硫磷产生两种主要产物,即各自的氧磷和氧磷进一步氧化产生的另一种产物。氧磷的产率为82 - 100%。测定了农药氧化前后对乙酰胆碱酯酶的抑制能力,对于所有测试的农药,氧化后的抑制能力远高于氧化前。获得了杀螟硫磷和对硫磷未氧化和氧化形式的抑制校准曲线。氧化后这些农药的检测灵敏度更高。