Parvez Shahid, Venkataraman Chandra, Mukherji Suparna
Centre for Environmental Science and Engineering, Indian Institute of Technology, Bombay, Powai, Mumbai 400076, India.
Toxicol In Vitro. 2008 Oct;22(7):1806-13. doi: 10.1016/j.tiv.2008.07.011. Epub 2008 Jul 26.
The toxicity of 14 industrially relevant organic chemicals was determined using freshly grown Vibrio fischeri bioluminescence inhibition assay. The results were compared to lyophilized V. fischeri, 96h fish, 48h Daphnia magna and 95h green algae bioassays. Reliability of octanol-water partition coefficient (K(ow)), and first order simple and valence molecular connectivity index ((1)chi, (1)chi(v)) based regression models for predicting toxicity to V. fischeri was studied. Correlations were obtained between freshly grown V. fischeri data (Log(EC50)) and Log(K(ow)), molecular connectivity indices ((1)chi, (1)chi(v)), energy of the highest occupied (E(HOMO)) and lowest unoccupied (E(LUMO)) molecular orbitals, and their difference (E(LUMO)-E(HOMO)). A good match was observed between V. fischeri assay conducted with freshly grown and lyophilized culture (r2=0.90). Good correlations (r2>0.95) were obtained with all the other bioassays after excluding compounds with Log(K(ow)) less than 2.0. Available regression models based on Log(K(ow)) and (1)chi(v) yielded lower toxicity values. V. fischeri bioassay showed fairly good correlation with Log(K(ow)), (1)chi and (1)chi(v) (r2>0.75) but poor correlation with E(HOMO), E(LUMO) and (E(LUMO)-E(HOMO)) in presence of polar compounds. E(HOMO) and E(LUMO) values are affected by polarity and can be used along with Log(K(ow)) and (1)chi(v) for generating better predictive models.
采用新鲜培养的费氏弧菌生物发光抑制试验测定了14种具有工业相关性的有机化学品的毒性。将结果与冻干的费氏弧菌、96小时鱼类、48小时大型溞和95小时绿藻生物测定结果进行了比较。研究了基于正辛醇-水分配系数(K(ow))以及一阶简单价分子连接性指数((1)chi、(1)chi(v))的回归模型预测对费氏弧菌毒性的可靠性。获得了新鲜培养的费氏弧菌数据(Log(EC50))与Log(K(ow))、分子连接性指数((1)chi、(1)chi(v))、最高占据分子轨道能量(E(HOMO))和最低未占据分子轨道能量(E(LUMO))及其差值(E(LUMO)-E(HOMO))之间的相关性。观察到新鲜培养和冻干培养的费氏弧菌试验之间有良好的匹配(r2 = 0.90)。在排除Log(K(ow))小于2.0的化合物后,与所有其他生物测定均获得了良好的相关性(r2>0.95)。基于Log(K(ow))和(1)chi(v)的现有回归模型得出的毒性值较低。费氏弧菌生物测定与Log(K(ow))、(1)chi和(1)chi(v)显示出相当好的相关性(r2>0.75),但在存在极性化合物的情况下,与E(HOMO)、E(LUMO)和(E(LUMO)-E(HOMO))的相关性较差。E(HOMO)和E(LUMO)值受极性影响,可与Log(K(ow))和(1)chi(v)一起用于生成更好的预测模型。