Aquatic Contaminants Research Division, Environment Canada, Burlington, Ontario, Canada.
Environ Toxicol Chem. 2013 Jul;32(7):1672-81. doi: 10.1002/etc.2236. Epub 2013 May 29.
Chronic toxicity tests of mixtures of 9 metals and 1 metalloid (As, Cd, Co, Cr, Cu, Mn, Ni, Pb, Tl, and Zn) at equitoxic concentrations over an increasing concentration range were conducted with the epibenthic, freshwater amphipod Hyalella azteca. The authors conducted 28-d, water-only tests. The bioaccumulation trends changed for 8 of the elements in exposures to mixtures of the metals compared with individual metal exposures. The bioaccumulation of Co and Tl were affected the most. These changes may be due to interactions between all the metals as well as interactions with waterborne ligands. A metal effects addition model (MEAM) is proposed as a more accurate method to assess the impact of mixtures of metals and to predict chronic mortality. The MEAM uses background-corrected body concentration to predict toxicity. This is important because the chemical characteristics of different waters can greatly alter the bioavailability and bioaccumulation of metals, and interactions among metals for binding at the site of action within the organism can affect body concentration. The MEAM accurately predicted toxicity in exposures to mixtures of metals, and predicted results were within a factor of 1.1 of the observed data, using 24-h depurated body concentrations. The traditional concentration addition model overestimated toxicity by a factor of 2.7.
采用底栖、淡水大型蚤 Hyalella azteca 进行了 9 种金属和 1 种类金属(As、Cd、Co、Cr、Cu、Mn、Ni、Pb、Tl 和 Zn)在等毒性浓度范围内的混合物的慢性毒性测试,且浓度范围逐渐增加。作者进行了为期 28 天的仅用水暴露测试。与单一金属暴露相比,混合物暴露下有 8 种元素的生物积累趋势发生了变化。Co 和 Tl 的生物积累受到的影响最大。这些变化可能是由于所有金属之间的相互作用以及与水相配体的相互作用。提出了一种金属效应加和模型(MEAM),作为一种更准确的方法来评估金属混合物的影响并预测慢性死亡率。MEAM 使用背景校正后的体浓度来预测毒性。这一点很重要,因为不同水的化学特性会极大地改变金属的生物利用度和生物积累,而金属在生物体作用部位的结合相互作用会影响体浓度。MEAM 准确地预测了金属混合物暴露的毒性,使用 24 小时净化后的体浓度,预测结果与观察数据相差 1.1 倍以内。传统的浓度加和模型高估了毒性,倍数为 2.7。