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四环素与铜(II)和镉(II)对费氏弧菌的联合毒性:络合反应的影响

Joint toxicity of tetracycline with copper(II) and cadmium(II) to Vibrio fischeri: effect of complexation reaction.

作者信息

Tong Fei, Zhao Yanping, Gu Xueyuan, Gu Cheng, Lee Charles C C

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, China.

出版信息

Ecotoxicology. 2015 Mar;24(2):346-55. doi: 10.1007/s10646-014-1383-7. Epub 2014 Nov 15.

Abstract

Co-contamination of antibiotic and heavy metals commonly occurs in the environment. Tetracycline (TC), a common antibiotic, can behave as an efficient organic ligand to complex with cations. In this paper, the joint toxicity of TC with two commonly existing metals, copper(II) and cadmium(II), towards a luminescent bacteria, Vibrio fischeri, are investigated. Results showed that coexistence of TC and Cu(II) showed a significant antagonistic effect, while TC and Cd(II) showed a synergistic effect. The aqueous speciation of TC with two metal cations was calculated using a chemical equilibrium software Visual MINTEQ and results indicated that a strong complexation exist between TC and Cu(II), while much weaker interaction between TC and Cd(II). Traditional joint toxicity prediction model based on independent action failed to predict the combined toxicity of TC with metals. A new method based on speciation calculation was used to evaluate the joint toxicity of ligands and cations. It is assumed that the metal-ligand complexes are non-toxic to V. fischeri and the joint toxicity is determined by the sum of toxic unit of free metal-ions and free organic ligands. It explained the joint toxicity of the mixed systems reasonably well. Meanwhile, citric acid (CA) and fulvic acid (FA) were also introduced in this study to provide a benchmark comparison with TC. Results showed it is also valid for mixed systems of CA and FA with metals except for the Cd-CA mixture.

摘要

抗生素与重金属的共同污染在环境中普遍存在。四环素(TC)作为一种常见的抗生素,可作为一种有效的有机配体与阳离子络合。本文研究了TC与两种常见金属铜(II)和镉(II)对发光细菌费氏弧菌的联合毒性。结果表明,TC与Cu(II)共存表现出显著的拮抗作用,而TC与Cd(II)表现出协同作用。使用化学平衡软件Visual MINTEQ计算了TC与两种金属阳离子的水相形态,结果表明TC与Cu(II)之间存在强络合作用,而TC与Cd(II)之间的相互作用较弱。基于独立作用的传统联合毒性预测模型无法预测TC与金属的联合毒性。一种基于形态计算的新方法被用于评估配体和阳离子的联合毒性。假定金属-配体络合物对费氏弧菌无毒,联合毒性由游离金属离子和游离有机配体的毒性单位之和决定。该方法能较好地解释混合体系的联合毒性。同时,本研究还引入了柠檬酸(CA)和富里酸(FA),以便与TC进行基准比较。结果表明,除了Cd-CA混合物外,该方法对CA和FA与金属的混合体系也有效。

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