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首页> 外文期刊>Archives of Toxicology >Cellular uptake and cytotoxic potential of respirable bentonite particles with different quartz contents and chemical modifications in human lung fibroblasts.
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Cellular uptake and cytotoxic potential of respirable bentonite particles with different quartz contents and chemical modifications in human lung fibroblasts.

机译:具有不同石英含量和化学修饰的可呼吸性膨润土颗粒在人肺成纤维细胞中的细胞吸收和细胞毒性潜力。

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Considering the biological reactivity of pure quartz in lung cells, there is a strong interest to clarify the cellular effects of respirable siliceous dusts, like bentonites. In the present study, we investigated the cellular uptake and the cytotoxic potential of bentonite particles (O< 10 microm) with an alpha-quartz content of up to 6% and different chemical modifications (activation: alkaline, acidic, organic) in human lung fibroblasts (IMR90). Additionally, the ability of the particles to induce apoptosis in IMR90-cells and the hemolytic activity was tested. All bentonite samples were tested for endotoxins with the in vitro-Pyrogen test and were found to be negative. Cellular uptake of particles by IMR90-cells was studied by transmission electron microscopy (TEM). Cytotoxicity was analyzed in IMR90-cells by determination of viable cells using flow cytometry and by measuring of the cell respiratory activity. Induced apoptotic cells were detected by AnnexinV/Propidiumiodide-staining and gel electrophoresis. Our results demonstrate that activated bentonite particles are better taken up by IMR90-cells than untreated (native) bentonite particles. Also, activated bentonite particles with a quartz content of 5-6% were more cytotoxic than untreated bentonites or bentonites with a quartz content lower than 4%. The bentonite samples induced necrotic as well as apoptotic cell death. In general, bentonites showed a high membrane-damaging potential shown as hemolytic activity in human erythrocytes. We conclude that cellular effects of bentonite particles in human lung cells are enhanced after chemical treatment of the particles. The cytotoxic potential of the different bentonites is primarily characterized by a strong lysis of the cell membrane.
机译:考虑到纯石英在肺细胞中的生物反应性,人们非常有兴趣澄清可吸入硅粉尘(如膨润土)的细胞效应。在本研究中,我们研究了α-石英含量高达6%的膨润土颗粒(O <10微米)的细胞摄取和细胞毒性潜能,并在人肺中进行了不同的化学修饰(活化:碱性,酸性,有机)成纤维细胞(IMR90)。另外,测试了颗粒在IMR90细胞中诱导凋亡的能力和溶血活性。所有的膨润土样品均通过体外热原试验检测了内毒素,结果为阴性。通过透射电子显微镜(TEM)研究了IMR90细胞对颗粒的细胞摄取。通过使用流式细胞仪确定活细胞并测量细胞呼吸活性,分析了IMR90细胞的细胞毒性。通过AnnexinV /碘化丙啶染色和凝胶电泳检测诱导的凋亡细胞。我们的结果表明,与未经处理的(天然)膨润土颗粒相比,IMR90细胞能更好地吸收活化的膨润土颗粒。此外,石英含量为5-6%的活性膨润土颗粒比未经处理的膨润土或石英含量低于4%的膨润土具有更高的细胞毒性。膨润土样品诱导坏死以及凋亡细胞死亡。通常,膨润土显示出高的破坏膜的潜力,表现为人红细胞的溶血活性。我们得出的结论是,膨润土颗粒在人肺细胞中进行化学处理后,其细胞效应得到增强。不同膨润土的细胞毒性潜力的主要特征是细胞膜的强烈裂解。

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