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在毒代动力学-毒效动力学框架下模拟不同盐度下的一种河口蛤中镉的生物积累和毒性,使急性测试更具生态相关性。

Making Acute Tests More Ecologically Relevant: Cadmium Bioaccumulation and Toxicity in an Estuarine Clam under Various Salinities Modeled in a Toxicokinetic-Toxicodynamic Framework.

机构信息

Key Laboratory of the Coastal and Wetland Ecosystems of Ministry of Education, College of the Environment and Ecology , Xiamen University , Xiamen , Fujian 361102 , P. R. China.

Center for Marine Environmental Chemistry and Toxicology , Xiamen University , Xiamen , Fujian 361102 , P. R. China.

出版信息

Environ Sci Technol. 2019 Mar 5;53(5):2873-2880. doi: 10.1021/acs.est.8b07095. Epub 2019 Feb 21.

DOI:10.1021/acs.est.8b07095
PMID:30768252
Abstract

Salinity has considerable effects on the toxicity of metals in estuarine waters. The effects of salinity are manifold, making it difficult to summarize for risk assessments. In this study, we separated and quantified the multiple effects of salinity on cadmium (Cd) in a toxicokinetic-toxicodynamic framework. The estuarine clam, Potamocorbula laevis, was used as a model organism. Cd bioaccumulation was measured using a stable-isotope-tracer technique; in parallel, toxicity tests were conducted. With the increase of salinity from 5 to 30, Cd uptake decreased monotonically. In contrast, the intrinsic sensitivity of organisms, measured by the toxicodynamic parameters, reached its minimum at intermediate salinities (i.e., 10 to 20). The overall salinity effects were dominated by the effects on Cd bioaccumulation; therefore, Cd toxicity decreased monotonically with the increases of salinity. The model developed in this study could provide predictions of no-effect concentration (1.7 to 34.9 μg L, end point mortality) and the median lethal concentration (LC) of Cd at different salinities. In conclusion, we developed a framework for quantifying the multiple effects of salinity and a method for estimating no-effect concentration from acute toxicity tests, which can be used for better assessments of metal risks in estuarine waters.

摘要

盐度对河口水中金属的毒性有很大影响。盐度的影响是多方面的,因此很难在风险评估中进行总结。在这项研究中,我们在毒代动力学-毒效动力学框架中分离并量化了盐度对镉(Cd)的多种影响。我们选择了河口蛤蜊(Potamocorbula laevis)作为模式生物。采用稳定同位素示踪技术测量 Cd 的生物累积;同时进行了毒性测试。随着盐度从 5 增加到 30,Cd 的摄取量呈单调下降。相比之下,以毒动力参数衡量的生物体固有敏感性在中间盐度(即 10 到 20)时达到最小值。总体盐度效应主要由 Cd 生物累积的影响决定;因此,随着盐度的增加,Cd 的毒性呈单调下降。本研究中开发的模型可以预测无效应浓度(1.7 到 34.9μg/L,终点死亡率)和不同盐度下 Cd 的半数致死浓度(LC)。总之,我们开发了一种量化盐度多种影响的框架和一种从急性毒性测试中估算无效应浓度的方法,可用于更好地评估河口水中金属的风险。

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