National Institute of Biology, Department of Genetic Toxicology and Cancer Biology, Večna pot 111, 1000 Ljubljana, Slovenia.
Jozef Stefan International Postgraduate School, Jamova 39, 1000 Ljubljana, Slovenia.
Toxins (Basel). 2020 Mar 31;12(4):219. doi: 10.3390/toxins12040219.
Ever-expanding environmental pollution is causing a rise in cyanobacterial blooms and the accumulation of plastics in water bodies. Consequently, exposure to mixtures of cyanotoxins and plastic-related contaminants such as bisphenols (BPs) is of increasing concern. The present study describes genotoxic effects induced by co-exposure to one of the emerging cyanotoxins-cylindrospermopsin (CYN)-(0.5 µg/mL) and BPs (bisphenol A (BPA), S (BPS), and F (BPF); (10 µg/mL)) in HepG2 cells after 24 and 72 h of exposure. The cytotoxicity was evaluated with an MTS assay and genotoxicity was assessed through the measurement of the induction of DNA double strand breaks (DSB) with the γH2AX assay. The deregulation of selected genes (xenobiotic metabolic enzyme genes, DNA damage, and oxidative response genes) was assessed using qPCR. The results showed a moderate reduction of cell viability and induction of DSBs after 72 h of exposure to the CYN/BPs mixtures and CYN alone. None of the BPs alone reduced cell viability or induced DSBs. No significant difference was observed between CYN and CYN/BPs exposed cells, except with CYN/BPA, where the antagonistic activity of BPA against CYN was indicated. The deregulation of some of the tested genes (, , , and ) was more pronounced after exposure to the CYN/BPs mixtures compared to single compounds, suggesting additive or synergistic action. The present study confirms the importance of co-exposure studies, as our results show pollutant mixtures to induce effects different from those confirmed for single compounds.
不断扩大的环境污染导致蓝藻水华和水体中塑料的积累增加。因此,接触到包括蓝藻毒素和塑料相关污染物(如双酚)在内的混合物的风险日益增加。本研究描述了在 HepG2 细胞中,同时暴露于一种新兴蓝藻毒素-柱孢藻毒素(CYN)(0.5 µg/mL)和双酚(BPs)(双酚 A(BPA)、S(BPS)和 F(BPF);(10 µg/mL))24 和 72 小时后,混合物引起的遗传毒性效应。通过 MTS 测定法评估细胞毒性,通过 γH2AX 测定法评估 DNA 双链断裂(DSB)的诱导来评估遗传毒性。使用 qPCR 评估选定基因(异生物质代谢酶基因、DNA 损伤和氧化应激反应基因)的失调。结果表明,在暴露于 CYN/BPs 混合物和 CYN 单独暴露 72 小时后,细胞活力中度降低并诱导 DSB。单独的 BPs 没有降低细胞活力或诱导 DSB。除了 CYN/BPA 外,单独暴露于 CYN 或 BPs 时,细胞之间没有观察到明显差异,这表明 BPA 对 CYN 具有拮抗作用。与单一化合物相比,暴露于 CYN/BPs 混合物后,一些测试基因(、、、和)的失调更为明显,表明存在相加或协同作用。本研究证实了共暴露研究的重要性,因为我们的结果表明污染物混合物会引起不同于单一化合物的作用。