Department of Natural Sciences, University of Maryland Eastern Shore, Princess Anne, MD 21853, USA.
Int J Environ Res Public Health. 2013 Oct 21;10(10):5209-20. doi: 10.3390/ijerph10105209.
This study evaluated the kinetic signature of toxicity of four heavy metals known to cause severe health and environmental issues--cadmium (Cd), mercury (Hg) lead (Pb) arsenic (As)--and the mixture of all four metals (Mix) on MCF7 cancer cells, in the presence and absence of the antioxidant glutathione (GSH). The study was carried out using real time cell electronic sensing (RT-CES). RT-CES monitors in real time the electrical impedance changes at the electrode/culture medium interface due to the number of adhered cells, which is used as an index of cell viability. Cells were seeded for 24 h before exposure to the metals and their mixtures. The results showed that in the presence and absence of cellular glutathione, arsenic was the most cytotoxic of all five treatments, inducing cell death after 5 h of exposure. Lead was the least cytotoxic in both scenarios. In the presence of cellular GSH, the cytotoxic trend was As > Cd > MIX > Hg > Pb, while in the absence of GSH, the cytotoxic trend was As > Hg > MIX > Cd > Pb. The findings from this study indicate the significance of glutathione-mediated toxicity of the metals examined--particularly for mercury--and may be clinically relevant for disorders such as autism spectrum disorder where decreased glutathione-based detoxification capacity is associated with increased mercury intoxication.
本研究评估了四种已知会对健康和环境造成严重问题的重金属(镉 (Cd)、汞 (Hg)、铅 (Pb) 和砷 (As))以及这四种金属的混合物(Mix)在存在和不存在抗氧化剂谷胱甘肽 (GSH) 时对 MCF7 癌细胞的毒性动力学特征。该研究使用实时细胞电子感应 (RT-CES) 进行。RT-CES 实时监测由于附着的细胞数量而在电极/培养基界面处发生的电阻抗变化,该变化用作细胞活力的指标。在暴露于金属及其混合物之前,细胞被播种 24 小时。结果表明,在存在和不存在细胞内谷胱甘肽的情况下,砷是所有五种处理中最具细胞毒性的,在暴露 5 小时后诱导细胞死亡。在这两种情况下,铅的细胞毒性最小。在存在细胞内 GSH 的情况下,细胞毒性趋势为 As > Cd > Mix > Hg > Pb,而在不存在 GSH 的情况下,细胞毒性趋势为 As > Hg > Mix > Cd > Pb。本研究的结果表明,谷胱甘肽介导的所检查金属的毒性的重要性 - 特别是对汞 - 并可能与自闭症谱系障碍等疾病相关,在这些疾病中,基于谷胱甘肽的解毒能力下降与汞中毒增加有关。