Garg Rajni, Smith Carr J
Computational Science Research Center, San Diego State University, San Diego, CA 92182-7720, USA.
Health, Safety & Environment, Albemarle Corporation, Baton Rouge, LA 70801-1765, USA.
Food Chem Toxicol. 2014 Jul;69:252-9. doi: 10.1016/j.fct.2014.03.035. Epub 2014 Apr 20.
Bioconcentration refers to the process of uptake and buildup of chemicals in living organisms. Experimental measurement of bioconcentration factor (BCF) is time-consuming and expensive, and is not feasible for a large number of chemicals of regulatory concern. Quantitative structure-activity relationship (QSAR) models are used for estimating BCF values to help in risk assessment of a chemical. This paper presents the results of a QSAR study conducted to address an important problem encountered in the prediction of the BCF of highly hydrophobic chemicals. A new QSAR model is derived using a dataset of diverse organic chemicals previously tested in a United States Environmental Protection Agency laboratory. It is noted that the linear relationship between the BCF and hydrophobic parameter, i.e., calculated octanol-water partition coefficient (ClogP), breaks down for highly hydrophobic chemicals. The parabolic QSAR equation, log BCF=3.036 ClogP-0.197 ClogP(2)-0.808 MgVol (n=28, r(2)=0.817, q(2)=0.761, s=0.558) (experimental log BCF range=0.44-5.29, ClogP range=3.16-11.27), suggests that a non-linear relationship between BCF and the hydrophobic parameter, along with inclusion of additional molecular size, weight and/or volume parameters, should be considered while developing a QSAR model for more reliable prediction of the BCF of highly hydrophobic chemicals.
生物富集是指生物体摄取并积累化学物质的过程。生物富集因子(BCF)的实验测量既耗时又昂贵,对于大量受监管关注的化学物质而言并不可行。定量构效关系(QSAR)模型用于估算BCF值,以帮助进行化学物质的风险评估。本文介绍了一项QSAR研究的结果,该研究旨在解决在预测高疏水性化学物质的BCF时遇到的一个重要问题。使用先前在美国环境保护局实验室测试过的多种有机化学物质的数据集推导出了一个新的QSAR模型。需要注意的是,对于高疏水性化学物质,BCF与疏水性参数(即计算得到的正辛醇 - 水分配系数(ClogP))之间的线性关系不再成立。抛物线型QSAR方程,log BCF = 3.036 ClogP - 0.197 ClogP² - 0.808 MgVol(n = 28,r² = 0.817,q² = 0.761,s = 0.558)(实验log BCF范围 = 0.44 - 5.29,ClogP范围 = 3.16 - 11.27)表明,在开发用于更可靠预测高疏水性化学物质BCF的QSAR模型时,应考虑BCF与疏水性参数之间的非线性关系,以及纳入额外的分子大小、重量和/或体积参数。