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一种用于评估金属混合物水生毒性的多金属多抗生素配体模型的开发与应用。

Development and application of a multimetal multibiotic ligand model for assessing aquatic toxicity of metal mixtures.

作者信息

Santore Robert C, Ryan Adam C

机构信息

HDR|HydroQual, Syracuse, New York, USA.

出版信息

Environ Toxicol Chem. 2015 Apr;34(4):777-87. doi: 10.1002/etc.2869. Epub 2015 Mar 9.

Abstract

A multimetal, multiple binding site version of the biotic ligand model (mBLM) has been developed for predicting and explaining the bioavailability and toxicity of mixtures of metals to aquatic organisms. The mBLM was constructed by combining information from single-metal BLMs to preserve compatibility between the single-metal and multiple-metal approaches. The toxicities from individual metals were predicted by assuming additivity of the individual responses. Mixture toxicity was predicted based on both dissolved metal and mBLM-normalized bioavailable metal. Comparison of the 2 prediction methods indicates that metal mixtures frequently appear to have greater toxicity than an additive estimation of individual effects on a dissolved metal basis. However, on an mBLM-normalized basis, mixtures of metals appear to be additive or less than additive. This difference results from interactions between metals and ligands in solutions including natural organic matter, processes that are accounted for in the mBLM. As part of the mBLM approach, a technique for considering variability was developed to calculate confidence bounds (called response envelopes) around the central concentration-response relationship. Predictions using the mBLM and response envelope were compared with observed toxicity for a number of invertebrate and fish species. The results show that the mBLM is a useful tool for considering bioavailability when assessing the toxicity of metal mixtures.

摘要

已开发出一种多金属、多结合位点版本的生物配体模型(mBLM),用于预测和解释金属混合物对水生生物的生物有效性和毒性。mBLM是通过整合单金属BLM的信息构建而成,以保持单金属和多金属方法之间的兼容性。通过假设个体反应的加和性来预测单个金属的毒性。基于溶解态金属和mBLM归一化的生物可利用态金属来预测混合物毒性。两种预测方法的比较表明,基于溶解态金属,金属混合物的毒性通常似乎比个体效应的加和估计值更大。然而,在mBLM归一化的基础上,金属混合物的毒性似乎具有加和性或小于加和性。这种差异源于金属与包括天然有机物在内的溶液中配体之间的相互作用,而这些过程在mBLM中已得到考虑。作为mBLM方法的一部分,开发了一种考虑变异性的技术,用于计算围绕中心浓度-反应关系的置信区间(称为反应包络)。将使用mBLM和反应包络的预测结果与多种无脊椎动物和鱼类的观察毒性进行了比较。结果表明,在评估金属混合物的毒性时,mBLM是一种考虑生物有效性的有用工具。

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