School of Environment, and State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Northeast Normal University, Changchun 130117, China.
College of Geographical Sciences, Harbin Normal University, Harbin 150025, China.
Int J Environ Res Public Health. 2019 Mar 22;16(6):1041. doi: 10.3390/ijerph16061041.
The single toxicity (IC) of zinc (Zn) and 11 nitro-substituted benzenes to were determined, respectively. On basis of single toxicity, the joint toxicity of binary mixtures of Zn and 11 nitro-substituted benzenes at different Zn concentrations of 0.2 IC, 0.5 IC, and 0.8 IC were measured. The joint toxicity was evaluated by toxic unit (TU) and additive index (AI) methods. The results indicated that the joint toxicity was not only depending on the Zn concentrations but also on the substituted groups of nitro-substituted benzenes. The quantitative structure-activity relation (QSAR) equations were developed and the results showed that the toxicity of nitro-substituted benzenes has different joint effect at the different Zn concentrations. At the Zn concentration of 0.2 IC, the binary joint effects were mainly antagonism and the joint toxicity was negatively related to descriptors called VE2_B(p) and TIC3. At the Zn concentration of 0.5 IC and 0.8 IC, the binary joint effects were mainly antagonism and simple addition, and the joint toxicity was related to the same descriptor Eig06_ AEA(dm). It indicated that the joint toxic actions were similar when combined at the medium and high concentrations of Zn.
分别测定了锌(Zn)和 11 种硝基取代苯对的单一毒性(IC)。基于单一毒性,在 Zn 浓度为 0.2 IC、0.5 IC 和 0.8 IC 的不同浓度下,测量了二元混合物 Zn 和 11 种硝基取代苯的联合毒性。通过毒单位(TU)和相加指数(AI)方法评价联合毒性。结果表明,联合毒性不仅取决于 Zn 浓度,还取决于硝基取代苯的取代基。建立了定量构效关系(QSAR)方程,结果表明,在不同的 Zn 浓度下,硝基取代苯的毒性具有不同的联合效应。在 Zn 浓度为 0.2 IC 时,二元联合效应主要为拮抗作用,联合毒性与 VE2_B(p)和 TIC3 等描述符呈负相关。在 Zn 浓度为 0.5 IC 和 0.8 IC 时,二元联合效应主要为拮抗作用和简单相加,联合毒性与 Eig06_ AEA(dm)等相同描述符相关。这表明在 Zn 的中高浓度下联合作用相似。