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首页> 外文期刊>Chemical Biology & Drug Design >Comparative QSAR Studies on Toxicity of Phenol Derivatives Using Quantum Topological Molecular Similarity Indices
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Comparative QSAR Studies on Toxicity of Phenol Derivatives Using Quantum Topological Molecular Similarity Indices

机译:使用量子拓扑分子相似性指标对苯酚衍生物的毒性进行QSAR比较研究

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摘要

Quantitative structure activity relationship (QSAR) analyses using a novel type of electronic descriptors called quantum topological molecular similarity (QTMS) indices were operated to describe and compare the mechanisms of toxicity of phenols toward five different strains (i.e., Tetrahymena pyriformis, L1210 Leukemia, Pseudomonas putida, Raja japonica and Cucumis sativus). The appropriate QSAR models for the toxicity data were obtained separately employing partial least squares (PLS) regression combined with genetic algorithms (GA), as a variable selection method. The resulting QSAR models were used to identify molecular fragments of phenol derivatives whose electronic properties contribute significantly to the observed toxicities. Using this information, it was feasible to discriminate between the mechanisms of action of phenol toxicity to the studied strains. It was found that toxicities of phenols to all strains, except with L1210 Leukemia, are significantly affected by electronic features of the phenolic hydroxyl group (C-O-H). Meanwhile, the resulting models can describe the inductive and resonance effects of substituents on various toxicities.
机译:使用一种称为量子拓扑分子相似性(QTMS)指数的新型电子描述符对定量结构活性关系(QSAR)进行分析,以描述和比较酚对五种不同菌株(即四膜虫,L1210白血病,假单胞菌)的毒性机理。 Putida,Raja japonica和Cucumis sativus)。分别使用偏最小二乘(PLS)回归和遗传算法(GA)作为变量选择方法,获得了适当的QSAR毒性数据模型。所得的QSAR模型用于鉴定酚衍生物的分子片段,这些衍生物的电子性质对观察到的毒性有显着贡献。利用该信息,区分酚毒性对所研究菌株的作用机理是可行的。发现苯酚对所有菌株的毒性,除了L1210白血病外,都受到酚羟基(C-O-H)电子特性的显着影响。同时,所得模型可以描述取代基对各种毒性的诱导和共振作用。

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