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硝基苯对梨形四膜虫毒性的定量构效关系分析。

Quantitative structure-activity analyses of nitrobenzene toxicity to Tetrahymena pyriformis.

作者信息

Cronin M T, Gregory B W, Schultz T W

机构信息

School of Pharmacy and Chemistry, Liverpool John Moores University, Byrom Street, Liverpool L3 3AF, England.

出版信息

Chem Res Toxicol. 1998 Aug;11(8):902-8. doi: 10.1021/tx970166m.

Abstract

Toxicity data for the 50% growth inhibitory concentration against Tetrahymena pyriformis (log (IGC50-1)) for 42 alkyl- and halogen-substituted nitro- and dinitrobenzenes were obtained experimentally. Log (IGC50-1) along with the hydrophobicity, the logarithm of the 1-octanol/water partition coefficient (log Kow), and the molecular orbital properties, the lowest unoccupied molecular orbital energy (Elumo) and maximum acceptor superdelocalizability (Amax), were used to develop quantitative structure-activity relationships (QSARs). All the nitroaromatic compounds tested had toxicity in excess of baseline, nonpolar narcosis. The nitrobenzenes were thought to elicit their toxic response through multiple (and mixed) mechanisms. No high-quality relationship was observed between toxicity and hydrophobicity, or Elumo, individually. However, a strong relationship ¿log (IGC50-1) = 16.4(Amax) - 4.64; n = 42, r2 = 0.847, s = 0.279, F = 229¿ was obtained. In an effort to improve predictability, two-parameter QSAR, or response surface, analyses were performed. These analyses resulted in the following QSARs: ¿log (IGC50-1) = 0.206(log Kow) - 16.0(Amax) - 5.04; n = 42, r2 = 0.897, s = 0.229, F = 180¿ and ¿log (IGC50-1) = 0.467(log Kow) - 1.60(Elumo) - 2.55; n = 42, r2 = 0.881, s = 0.246, F = 154¿.

摘要

通过实验获得了42种烷基和卤素取代的硝基苯及二硝基苯对梨形四膜虫的50%生长抑制浓度(log(IGC50 - 1))的毒性数据。log(IGC50 - 1) 与疏水性(1 - 辛醇/水分配系数的对数,log Kow)以及分子轨道性质(最低未占据分子轨道能量,Elumo和最大受体超离域性,Amax)一起用于建立定量构效关系(QSARs)。所有测试的硝基芳香化合物的毒性均超过基线非极性麻醉毒性。硝基苯被认为通过多种(混合)机制引发其毒性反应。单独来看,毒性与疏水性或Elumo之间未观察到高质量的关系。然而,得到了一个强关系:log(IGC50 - 1) = 16.4(Amax) - 4.64;n = 42,r2 = 0.847,s = 0.279,F = 229。为了提高预测性,进行了双参数QSAR或响应面分析。这些分析得出了以下QSARs:log(IGC50 - 1) = 0.206(log Kow) - 16.0(Amax) - 5.04;n = 42,r2 = 0.897,s = 0.229,F = 180和log(IGC50 - 1) = 0.467(log Kow) - 1.60(Elumo) - 2.55;n = 42,r2 = 0.881,s = 0.246,F = 154。

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