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Integrative comparison of cadmium and iron oxide as yellow pigment in terms of cellular stress and genotoxicity in vitro and in vivo

机译:镉和氧化铁作为黄色色素在细胞应激和体外遗传毒性方面的整合性比较

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Backgrounds Heavy metals cadmium has been used as a yellow pigment due to its bright and lasting color. Considering the toxicity of cadmium, yellow iron oxide has been suggested as a substitute due to its cost-effectiveness. However, cellular and molecular safety information of yellow iron oxide is not fully understood. Methods Metal-mediated cellular stress indicated by metallothionein 1 expression were measured by western blotting and qRT-PCR in cadmium- or iron oxide-treated HepG2 cells. Genotoxicity were detected using comet assay and micronuclei assay in HepG2 cells and rat liver tissue. Observed toxicological effects were quantified and scored on a scale bar for integrated analysis. Results Yellow iron oxide showed significantly low metallothionein 1 expression and genotoxicity in all results. This result indicates high potential of iron oxide as an alternative to cadmium. Conclusion We demonstrated the comparative toxicity of the cadmium and yellow iron oxide in terms of stress-responsive biomarker expression and genotoxicity in HepG2 cells and rat liver tissue. Our study with the integrated strategy suggests usefulness of the yellow iron oxide as a substitute material in cadmium-containing products and reports useful tool to comprehensively assess the toxicity of suspected toxicants or newly developed materials.
机译:由于其明亮和持久的颜色,背景镉重金属镉已被用作黄色颜料。考虑到镉的毒性,由于其成本效益,已经提出了黄色氧化铁作为替代品。然而,不完全理解黄氧化铁的细胞和分子安全信息。方法通过在镉或氧化铁处理的HepG2细胞中通过蛋白质印迹和QRT-PCR测量金属介导的金属介导的细胞应激。使用HepG2细胞和大鼠肝组织中的彗星测定和微核测定检测基因毒性。观察到的毒理学效应被定量并在尺度条上进行均进行综合分析。结果黄氧化铁在所有结果中显示出明显低的金属硫蛋白1表达和遗传毒性。该结果表明了氧化铁的高电位作为镉的替代方案。结论我们证明了在HepG2细胞和大鼠肝组织中应激响应生物标志物表达和遗传毒性方面的镉和黄色氧化铁的比较毒性。我们与综合策略的研究表明,黄氧化铁作为含镉产品中的替代材料的有用性,并报告了有用的工具,以全面评估疑似毒物或新开发的材料的毒性。

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