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脂肪族含羰基α,β-不饱和化学品对梨形四膜虫影响的结构-毒性关系

Structure-toxicity relationships for the effects to Tetrahymena pyriformis of aliphatic, carbonyl-containing, alpha,beta-unsaturated chemicals.

作者信息

Schultz T Wayne, Netzeva Tatiana I, Roberts David W, Cronin Mark T D

机构信息

College of Veterinary Medicine, The University of Tennessee, 2407 River Drive, Knoxville, Tennessee 37996-4543, USA.

出版信息

Chem Res Toxicol. 2005 Feb;18(2):330-41. doi: 10.1021/tx049833j.

Abstract

Toxicity data for 82 aliphatic chemicals with an alpha,beta-unsaturated substructure were compiled. Toxicity was assessed in the 2-day Tetrahymena pyriformis population growth impairment assay. Toxic potency [log(IGC50(-1))] for most of these chemicals was in excess of baseline narcosis as quantified by the 1-octanol/water partition coefficient (log K(ow)). The toxicity of the alpha,beta-unsaturated aldehydes was modeled well by log K(ow) in conjunction with the sum of partial charges on the vinylene carbon atoms (Q(C4) + Q(C3)) and the energy of the lowest unoccupied molecular orbital (E(lumo)). These electronic descriptors were also successful at modeling the toxicity of alpha,beta-unsaturated ketones. The toxicity of a range of acrylates was constant within about 0.2 of a log unit. Conversely, the toxicity of methacrylates and esters containing the vinylene group varied considerably and was explained by their hydrophobicity. The comparison of the quantitative structure-activity relationship (QSAR) for the methacrylates and esters with that for non-polar narcosis showed little significant difference and hence suggested that substitution on the carbon-carbon double bond in the methacrylates and vinylene unsaturated esters does not enhance toxicity over that of baseline. Substitution on the carbon-carbon double bond in the alpha,beta-unsaturated aldehydes resulted in toxicity that was similar to that for saturated derivatives. Although an excellent hydrophobicity-dependent QSAR was developed for the esters containing ethynylene group, these compounds are considered to act as Michael-type acceptors. Attempts to combine different groups of Michael-type acceptors into a single QSAR, based on mechanistically derived descriptors, were unsuccessful. Thus, the modeling of the toxicity of the alpha,beta-unsaturated carbonyl domain is currently limited to models for narrow subdomains.

摘要

汇编了82种具有α,β-不饱和亚结构的脂肪族化学品的毒性数据。在为期2天的梨形四膜虫种群生长抑制试验中评估了毒性。这些化学品中大多数的毒性强度[log(IGC50(-1))]超过了由1-辛醇/水分配系数(log K(ow))量化的基线麻醉作用。α,β-不饱和醛的毒性通过log K(ow)结合亚乙烯基碳原子上的部分电荷总和(Q(C4)+Q(C3))以及最低未占分子轨道的能量(E(lumo))得到了很好的建模。这些电子描述符在对α,β-不饱和酮的毒性建模方面也很成功。一系列丙烯酸酯的毒性在约0.2个对数单位范围内保持恒定。相反,甲基丙烯酸酯和含有亚乙烯基的酯的毒性差异很大,并由其疏水性来解释。甲基丙烯酸酯和酯与非极性麻醉作用的定量构效关系(QSAR)比较显示几乎没有显著差异,因此表明甲基丙烯酸酯和亚乙烯基不饱和酯中碳-碳双键上的取代不会比基线毒性增强。α,β-不饱和醛中碳-碳双键上的取代导致的毒性与饱和衍生物相似。尽管为含乙炔基的酯开发了出色的基于疏水性的QSAR,但这些化合物被认为是作为迈克尔型受体起作用。基于机理推导的描述符将不同组的迈克尔型受体组合成单个QSAR的尝试未成功。因此,目前α,β-不饱和羰基域毒性的建模仅限于狭窄子域的模型。

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