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Arsenic trioxide (As2O3) induces apoptosis and necrosis mediated cell death through mitochondrial membrane potential damage and elevated production of reactive oxygen species in PLHC-1 fish cell line

机译:三氧化砷(AS2O3)通过线粒体膜潜在损伤诱导细胞凋亡和坏死介导的细胞死亡并在PLHC-1鱼细胞系中升高了活性氧物种

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摘要

Several environmental pollutants, including metals can induce toxicological effect on aquatic animal species. Most studies to understand the toxicity of arsenic compounds were performed in mammalian cells; however, the study of the arsenic toxicity to the aquatic animals’ species, including fish, is limited. So the objective of this study was first to investigate the effects of As2O3 induced toxicity particularly on apoptosis and necrosis mediated cell death in fish cell PLHC-1 as compared to the mechanism of toxicity from known mammalian cell lines, secondly to relate in vitro effects in fish to those demonstrated by in vivo systems. To conduct this study, PLHC-1 cells were exposed to various concentrations of As2O3 (0–100μM) for 10, 20 and 40 h. The results indicate that As2O3 exposure promoted apoptotic and necrotic mediated cell death in a concentration and time dependent manner. Cell death (apoptotic and necrotic) induced by As2O3 was further confirmed by changes in various phases of cell cycle, DNA fragmentation (necro- comet and apo-comet) in the comet assay, alteration in mitochondrial membrane potential and formation of increased reactive oxygen species (ROS). Apoptotic mediated cell death was confirmed further by observing the increased caspase-3 activity and elevated expression of p53, cytochrome c and Bax proteins levels in the same experimental conditions. PLHC-1 cells were shown to be a good model for evaluating biochemical/cytotoxic effects following exposure to various reference chemicals and environmental contaminants. In vitro data obtained from this study provides a comprehensive approach for the elucidating the actual molecular mechanism for As2O3 induced toxicity particularly apoptosis and necrosis mediated cell death in PLHC-1 cell line.
机译:包括金属在内的几种环境污染物均可对水生动物种类产生毒理作用。大多数了解砷化合物毒性的研究都是在哺乳动物细胞中进行的。但是,对砷对包括鱼类在内的水生动物物种的毒性的研究非常有限。因此,本研究的目的是首先研究As2O3诱导的毒性作用,特别是与已知哺乳动物细胞系的毒性作用机理相比,对鱼细胞PLHC-1的凋亡和坏死介导的细胞死亡的影响,其次是与体外作用有关。鱼到体内系统证明的那些。为了进行这项研究,将PLHC-1细胞暴露于各种浓度的As2O3(0–100μM)中10、20和40小时。结果表明,As2O3暴露以浓度和时间依赖性促进细胞凋亡和坏死介导的细胞死亡。 As2O3诱导的细胞死亡(细胞凋亡和坏死性)通过细胞周期各个阶段的变化,彗星测定中的DNA片段化(坏死彗星和载脂蛋白彗星),线粒体膜电位的改变以及活性氧的形成而进一步证实(ROS)。在相同的实验条件下,通过观察caspase-3活性的增加以及p53,细胞色素c和Bax蛋白表达的升高,进一步证实了凋亡介导的细胞死亡。 PLHC-1细胞被证明是评估暴露于各种参考化学品和环境污染物后的生化/细胞毒性作用的良好模型。从这项研究中获得的体外数据为阐明As2O3诱导的毒性,尤其是PLHC-1细胞系中的凋亡和坏死介导的细胞死亡的实际分子机制提供了一种全面的方法。

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