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生物配体建模方法:主要阳离子对金属对土壤和水生生物毒性影响的综合研究

Biotic ligand modeling approach: Synthesis of the effect of major cations on the toxicity of metals to soil and aquatic organisms.

作者信息

Ardestani Masoud M, van Straalen Nico M, van Gestel Cornelis A M

机构信息

Department of Ecological Science, Faculty of Earth and Life Sciences, VU University, Amsterdam, The Netherlands.

出版信息

Environ Toxicol Chem. 2015 Oct;34(10):2194-204. doi: 10.1002/etc.3060. Epub 2015 Sep 8.

Abstract

The biotic ligand model (BLM) approach is used to assess metal toxicity, taking into account the competition of other cations with the free metal ions for binding to the biotic ligand sites of aquatic and soil organisms. The bioavailable fraction of metals, represented by the free metal ion, is a better measure than the total concentration for assessing their potential risk to the environment. Because BLMs are relating toxicity to the fraction of biotic ligands occupied by the metal, they can be useful for investigating factors affecting metal bioaccumulation and toxicity. In the present review, the effects of major cations on the toxicity of metals to soil and aquatic organisms were comprehensively studied by performing a meta-analysis of BLM literature data. Interactions at the binding sites were shown to be species- and metal-specific. The main factors affecting the relationships between toxicity and conditional binding constants for metal binding at the biotic ligand appeared to be Ca(2+) , Mg(2+) , and protons. Other important characteristics of the exposure medium, such as levels of dissolved organic carbon and concentrations of other cations, should also be considered to obtain a proper assessment of metal toxicity to soil and aquatic organisms.

摘要

生物配体模型(BLM)方法用于评估金属毒性,该方法考虑了其他阳离子与游离金属离子竞争结合水生和土壤生物的生物配体位点的情况。以游离金属离子为代表的金属生物可利用部分,在评估其对环境的潜在风险方面,是比总浓度更好的衡量指标。由于生物配体模型将毒性与被金属占据的生物配体部分联系起来,因此它们可用于研究影响金属生物累积和毒性的因素。在本综述中,通过对生物配体模型文献数据进行荟萃分析,全面研究了主要阳离子对金属对土壤和水生生物毒性的影响。结果表明,结合位点处的相互作用具有物种和金属特异性。影响生物配体上金属结合的毒性与条件结合常数之间关系的主要因素似乎是Ca(2+)、Mg(2+)和质子。为了正确评估金属对土壤和水生生物的毒性,还应考虑暴露介质的其他重要特性,如溶解有机碳水平和其他阳离子浓度。

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