Koutsaftis Apostolos, Aoyama Isao
Research Institute for Bioresources, Okayama University, Chuo Kurashiki 710-0046, Japan.
Environ Toxicol. 2006 Aug;21(4):432-9. doi: 10.1002/tox.20202.
Three of the most commonly used antifouling booster biocides that are usually combined with copper or copper compounds are Irgarol 1051, Diuron, and Zn pyrithione. This study represents an assessment of the interactive effects of the antifouling biocides combined with each other, and with three heavy metals (Cu, Cd, and Zn) in binary mixtures, on the marine algae Chaetoceros gracilis. Seventy-two hour growth inhibition tests were carried out, and the IC50 values of the chemicals were determined along with growth inhibition (%) for several concentrations. The joint effect of the binary mixtures of all the chemicals was assessed by using two models, concentration addition model and the model of probabilities. The following increasing order of toxicity was obtained: Cd < Zn < Cu < Diuron < Zn pyrithione < Irgarol 1051. The interactive effects of the organic chemicals combined with each other on the growth of Ch. gracilis were firmly synergistic. Irgarol 1051 combined with Cd performed synergistic effects, and Zn pyrithione with copper and cadmium action was strictly antagonistic, and the results of the two models were in agreement in almost all mixtures.
三种最常用的通常与铜或铜化合物混合使用的防污增效杀生剂分别是灭藻醌、敌草隆和吡啶硫酮锌。本研究评估了这些防污杀生剂相互之间以及与三种重金属(铜、镉和锌)二元混合物对海洋藻类纤细角毛藻的交互作用。进行了72小时的生长抑制试验,并测定了这些化学物质的半数抑制浓度(IC50)值以及几种浓度下的生长抑制率(%)。通过使用浓度相加模型和概率模型这两种模型评估了所有化学物质二元混合物的联合效应。得到了以下毒性递增顺序:镉<锌<铜<敌草隆<吡啶硫酮锌<灭藻醌。有机化学物质相互之间对纤细角毛藻生长的交互作用具有明显的协同性。灭藻醌与镉组合表现出协同效应,而吡啶硫酮锌与铜和镉的作用则表现为严格的拮抗作用,并且在几乎所有混合物中两种模型的结果都一致。