Farley Kevin J, Meyer Joseph S
Department of Civil and Environmental Engineering, Manhattan College, Riverdale, New York, USA.
Environ Toxicol Chem. 2015 Apr;34(4):821-32. doi: 10.1002/etc.2837.
A comparison of 4 metal mixture toxicity models (that were based on the biotic ligand model [BLM] and the Windermere humic aqueous model using the toxicity function [WHAM-FTOX ]) was presented in a previous paper. In the present study, a streamlined version of the 4 models was developed and applied to multiple data sets and test conditions to examine key assumptions and calibration strategies that are crucial in modeling metal mixture toxicity. Results show that 1) a single binding site on or in the organism was a useful and oftentimes sufficient framework for predicting metal toxicity; 2) a linear free energy relationship (LFER) for bidentate binding of metals and cations to the biotic ligand provided a good first estimate of binding coefficients; 3) although adjustments in metal binding coefficients or adjustments in chemical potency factors can both be used in model calibration for single-metal exposures, changing metal binding coefficients or chemical potency factors had different effects on model predictions for metal mixtures; and 4) selection of a mixture toxicity model (based on concentration addition or independent action) was important in predicting metal mixture toxicity. Moving forward, efforts should focus on reducing uncertainties in model calibration, including development of better methods to characterize metal binding to toxicologically active binding sites, conducting targeted exposure studies to advance the understanding of metal mixture toxicity, and further developing LFERs and other tools to help constrain the model calibration.
前一篇论文中对4种金属混合物毒性模型(基于生物配体模型[BLM]和使用毒性函数的温德米尔腐殖酸水模型[WHAM - FTOX])进行了比较。在本研究中,开发了这4种模型的简化版本,并将其应用于多个数据集和测试条件,以检验在模拟金属混合物毒性中至关重要的关键假设和校准策略。结果表明:1)生物体上或体内的单个结合位点是预测金属毒性的有用且通常足够的框架;2)金属和阳离子与生物配体的双齿结合的线性自由能关系(LFER)为结合系数提供了良好的初步估计;3)虽然在单金属暴露的模型校准中,调整金属结合系数或调整化学效力因子都可以使用,但改变金属结合系数或化学效力因子对金属混合物的模型预测有不同影响;4)选择混合物毒性模型(基于浓度相加或独立作用)对预测金属混合物毒性很重要。展望未来,工作应集中在减少模型校准中的不确定性,包括开发更好的方法来表征金属与毒理学活性结合位点的结合、开展有针对性的暴露研究以增进对金属混合物毒性的理解,以及进一步开发LFERs和其他工具来帮助限制模型校准。