Schultz T W, Sinks G D, Hunter R S
College of Veterinary Medicine, University of Tennessee, Knoxville 37901-1071, USA.
SAR QSAR Environ Res. 1995;3(1):27-36. doi: 10.1080/10629369508233991.
The relative toxicity (log IGC-1(50)) of 54 selected alkanones, both aliphatic and aromatic, as well as, alkenones and alkynones was evaluated in the static Tetrahymena pyriformis population growth assay. Excess toxicity, an indicator of bioreactivity, was associated only with the alpha-beta unsaturated alkenones and alkynones. Moreover, the alkynones were found to be more toxic than corresponding alkenones. A high quality 1-octanol/water partition coefficient (log Kow) dependent structure-toxicity relationship, log IGC-1(50) = 0.86 (log Kow) - 2.27; r2 = 0.955, was developed for alkanones. This QSAR represented the nonpolar narcosis mechanism of toxic action. Toxicity of alkenones was predicted by the highest-occupied-molecular-orbital energy (HOMO), log IGC-1(50) = -3.474 (HOMO) -35.357; r2 = 0.897, and the difference between HOMO and the lowest-unoccupied-molecular-orbital energy (LUMO), log IGC-1(50) = -3.559 (HOMO-LUMO gap) - 36.106; r2 = 0.903. The alpha-beta unsaturated ketones are considered soft electrophiles. Moreover, the toxicity of the aliphatic alkanones and alkenones was predicted by log Kow and LUMO, log IGC-1(50) = 0.69 (log Kow) - 2.55 (LUMO) + 0.05; r2 = 0.852.
在静态梨形四膜虫种群生长试验中,评估了54种选定的脂肪族和芳香族链烷酮以及烯酮和炔酮的相对毒性(log IGC-1(50))。过量毒性作为生物反应性的一个指标,仅与α-β不饱和烯酮和炔酮有关。此外,发现炔酮比相应的烯酮毒性更大。针对链烷酮建立了一个高质量的依赖于1-辛醇/水分配系数(log Kow)的结构-毒性关系,log IGC-1(50) = 0.86 (log Kow) - 2.27;r2 = 0.955。这种定量构效关系代表了毒性作用的非极性麻醉机制。烯酮的毒性通过最高占据分子轨道能量(HOMO)进行预测,log IGC-1(50) = -3.474 (HOMO) -35.357;r2 = 0.897,以及通过HOMO与最低未占据分子轨道能量(LUMO)之间的差值进行预测,log IGC-1(50) = -3.559 (HOMO-LUMO gap) - 36.106;r2 = 0.903。α-β不饱和酮被认为是软亲电试剂。此外,脂肪族链烷酮和烯酮的毒性通过log Kow和LUMO进行预测,log IGC-1(50) = 0.69 (log Kow) - 2.55 (LUMO) + 0.05;r2 = 0.852。