Curcic Marijana, Durgo Ksenija, Kopjar Nevenka, Ancic Mario, Vucinic Slavica, Antonijevic Biljana
Department of Toxicology "Akademik Danilo Soldatovic", University of Belgrade - Faculty of Pharmacy, Vojvode Stepe 450, 11221 Belgrade, Serbia.
Department for Biochemical Engineering, Faculty of Food Technology and Biotechnology, Zagreb University, Krsnjavoga 25, 10000 Zagreb, Croatia.
Environ Toxicol Pharmacol. 2014 Sep;38(2):663-71. doi: 10.1016/j.etap.2014.07.021. Epub 2014 Aug 4.
In order to look into the combined effects of Cd and BDE-209 in vitro, this study was aimed at examining cytotoxic and genotoxic effects using the human colon carcinoma cell line (SW 480) as a biological test system as well as to determine if ROS production was one of the possible mechanisms of their mixture action. This cell line was chosen since ingestion of contaminated food/water represents an important route of exposure to both Cd and BDE-209, which is why intestinal cells are a common target for the contaminants present in food and water. Cells were treated with single Cd in concentrations of 2.5, 7.5 or 15μg Cd/mL (corresponding to 22, 67 or 134μM), single BDE-209 in concentrations of 2.5, 5 or 10μg BDE209/mL (corresponding to 2.5, 5 or 10μM), and their mixtures (design 3×3). Mixture of Cd and BDE-209 has shown clear potential to reduce the viability of SW 480 cells, as evidenced by cytotoxicity associated with ROS generation. Factorial regression models used to identify type of interaction revealed synergism related to mixture citotoxicity and additive interaction for the effect on ROS production. The results from this introductory study could contribute to the issue of possible adverse effects associated with co-exposure and body burden with two persistent environmental pollutants, Cd and BDE-209.
为了研究镉(Cd)和多溴二苯醚-209(BDE-209)的体外联合效应,本研究旨在以人结肠癌细胞系(SW 480)作为生物测试系统,检测其细胞毒性和遗传毒性效应,并确定活性氧(ROS)生成是否为它们联合作用的可能机制之一。选择该细胞系是因为摄入受污染的食物/水是接触Cd和BDE-209的重要途径,这就是为什么肠道细胞是食物和水中污染物的常见靶标。细胞分别用浓度为2.5、7.5或15μg Cd/mL(分别对应于22、67或134μM)的单一Cd、浓度为2.5、5或10μg BDE209/mL(分别对应于2.5、5或10μM)的单一BDE-209及其混合物(3×3设计)进行处理。Cd和BDE-209的混合物已显示出明显降低SW 480细胞活力的潜力,与ROS生成相关的细胞毒性证明了这一点。用于确定相互作用类型的析因回归模型显示,混合物细胞毒性存在协同作用,对ROS生成的影响存在相加作用。这项初步研究的结果可能有助于解决与两种持久性环境污染物Cd和BDE-209共同暴露及体内负荷相关的潜在不利影响问题。