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首页> 外文期刊>Mutagenesis >Assessing the impact of As-Cd-Pb metal mixture on cell transformation by two-stage Balb/c 3T3 cell assay.
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Assessing the impact of As-Cd-Pb metal mixture on cell transformation by two-stage Balb/c 3T3 cell assay.

机译:通过两阶段BALB / C 3T3细胞测定评估AS-CD-PB金属混合物对细胞转化的影响。

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Human beings are exposed to metals as a consequence of various industrial activities, including glass production, agrochemical production, metallurgy and battery manufacture. New data about the possible mechanisms involved in the carcinogenic activity of these metals are constantly being reported. Exposure to complex mixtures of metals is more likely to occur than exposure to a single metal alone. Among these elements, arsenic, cadmium and lead are ubiquitous air and water pollutants that continue to threaten the quality of public health around the world. The aim of the present study was to evaluate the capability of a mixture of 2 μM NaAsO2, 2 μM CdCl2 and 5 μM Pb(C2H3O2)2·3H2O at relevant epidemiological concentrations to induce cell transformation processes. Transforming potential was determined by a murine two-stage Balb/c 3T3 cell assay. Cell viability, reactive oxygen species (ROS), DNA damage, cell cycle analysis, senescence, generation time and metallothionein expression were also evaluated. The results showed that the metal mixture induced morphological cell transformation only when acting as initiator stimuli of the process. A decrease in cell viability was observed at the promotion stage, a time during which ROS increase, especially when a metal mixture was applied as a promoter stimulant. Changes in DNA damage were not observed throughout the assay; however, we observed G1 cell cycle arrest. The metal mixture, acting as a promoter, is capable of inducing senescence, but metals employed as initiators with 12-O-tetradecanoylphorbol-13-acetate as a promoter are capable of causing avoidance of senescence and triggering the transformation potential of the cells.
机译:由于各种工业活动,包括玻璃生产,农业化学生产,冶金和电池制造,将人类暴露于金属。报告了关于这些金属致癌活性所涉及的可能机制的新数据。暴露于复合物的金属混合物比单独暴露于单一金属的可能发生。在这些元素中,砷,镉和铅是普遍存在的空气和水污染物,继续威胁到世界各地的公共卫生的质量。本研究的目的是评估2μMNAAS2,2μMCCL2和5μMPB(C 2 H 3 O 2)2·3H2O的混合物的能力,以在相关的流行病学浓度下诱导细胞转化过程。转化电位由鼠两级BALB / C 3T3细胞测定确定。还评估了细胞活力,反应性氧物质(ROS),DNA损伤,细胞循环分析,衰老,发电时间和金属硫蛋白表达。结果表明,仅当作用作为该方法的引发剂刺激时,金属混合物诱导的形态细胞转化。在促销阶段观察到细胞活力的减少,在ros增加的时间,特别是当金属混合物作为启动子兴奋剂施用时。在整个测定中未观察到DNA损伤的变化;然而,我们观察到G1细胞周期骤停。作为启动子的金属混合物能够诱导衰老,但是用作具有12-O-四癸酰基卟啉-13-乙酸酯作为启动子的引发剂的金属能够引起衰退并触发细胞的转化电位。

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