首页> 外文期刊>International Journal of Molecular Sciences >Toxicity Assessment of Atrazine and Related Triazine Compounds in the Microtox Assay, and Computational Modeling for Their Structure-Activity Relationship *
【24h】

Toxicity Assessment of Atrazine and Related Triazine Compounds in the Microtox Assay, and Computational Modeling for Their Structure-Activity Relationship *

机译:阿特拉津及其相关三嗪类化合物在微毒试验中的毒性评估以及其构效关系的计算模型*

获取原文
           

摘要

The triazines are a group of chemically similar herbicides including atrazine, cyanazine, and propazine, primarily used to control broadleaf weeds. About 64 to 80 million lbs of atrazine alone are used each year in the United States, making it one of the two most widely used pesticides in the country. All triazines are somewhat persistent in water and mobile in soil. They are among the most frequently detected pesticides in groundwater. They are considered as possible human carcinogens (Group C) based on an increase in mammary gland tumors in female laboratory animals. In this research, we performed the Microtox Assay to investigate the acute toxicity of a significant number of triazines including atrazine, atraton, ametryne, bladex, prometryne, and propazine, and some of their degradation products including atrazine desethyl, atrazine deisopropyl, and didealkyled triazine. Tests were carried out as described by Azur Environmental [1]. The procedure measured the relative acute toxicity of triazines, producing data for the calculation of triazine concentrations effecting 50% reduction in bioluminescence (EC50s). Quantitative structure-activity relationships (QSAR) were examined based on the molecular properties obtained from quantum mechanical predictions performed for each compound. Toxicity tests yielded EC50 values of 39.87, 273.20, 226.80, 36.96, 81.86, 82.68, 12.74, 11.80, and 78.50 mg/L for atrazine, propazine, prometryne, atraton, atrazine desethyl, atrazine deisopropyl, didealkylated triazine, ametryne, and bladex, respectively; indicating that ametryne was the most toxic chemical while propazine was the least toxic. QSAR evaluation resulted in a coefficient of determination (r2) of 0.86, indicating a good value of toxicity prediction based on the chemical structures/properties of tested triazines.
机译:三嗪是一组化学相似的除草剂,包括阿特拉津,氰嗪和丙嗪,主要用于控制阔叶杂草。在美国,每年仅使用约64至8000万磅的at去津,使其成为该国使用最广泛的两种农药之一。所有的三嗪在水中都有一定的持久性,在土壤中有流动性。它们是地下水中最常见的农药之一。根据雌性实验动物乳腺肿瘤的增加,它们被认为是可能的人类致癌物(C组)。在这项研究中,我们进行了Microtox分析,以研究包括阿特拉津,阿特拉顿,六氢呋喃,脱氢萘草酮,Bladex,丙三醇和丙嗪在内的大量三嗪及其某些降解产物(包括阿特拉津脱乙基,阿特拉津脱异丙基和二脱烷基三嗪)的急性毒性。 。按照Azur Environmental [1]的描述进行测试。该程序测量了三嗪的相对急性毒性,从而产生了数据来计算三嗪浓度,从而降低了50%的生物发光(EC 50 s)。基于从对每种化合物进行的量子力学预测中获得的分子特性,研究了定量构效关系(QSAR)。毒性试验得出的阿特拉津,丙嗪,普鲁ne烯,阿曲酮,阿特拉津去乙基,阿特拉津脱异丙基,阿特拉津,异丙嗪,阿曲通的EC 50 值分别为39.87、273.20、226.80、36.96、81.86、82.68、12.74、11.80和78.50 mg / L双二烷基化的三嗪,a紫杉醇和Bladex;这表明六氢萘是毒性最高的化学物质,而丙嗪的毒性最低。 QSAR评估得出的测定系数(r 2 )为0.86,表明基于被测三嗪的化学结构/性质,毒性预测值良好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号