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Prevalent anatase crystalline phase increases the cytotoxicity of biphasic titanium dioxide nanoparticles in mammalian cells

机译:普遍的锐钛矿结晶相增加了哺乳动物细胞中双相二氧化钛纳米颗粒的细胞毒性

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Nanoparticular form of titanium dioxide (TiO2 NPs) belongs to important industrial material. Despite being widely used, serious contradictions regarding biosafety of TiO2 NPs remain. We anticipate that such discrepancies could be due to a lack of understanding of a linkage between TiO2 NPs phase composition and cytotoxicity. Therefore, we synthesized two types of biphasic TiO2 NPs differing in an anatase-brookite phase composition. The study presents an array of in vitro data suggesting that TiO2 NPs with a prevailing anatase phase composition possess higher cytotoxicity compared to TiO2 NPs with an equal anatase-brookite crystallinity. This phenomenon was evidenced by significantly higher inhibition of metabolic activity and growth of epithelial and neuroblast-like cells. Moreover, anatase-prevailing TiO2 NPs tend to produce higher amount of reactive oxygen species resulting in DNA fragmentation. Further insights into the molecular aspects of cytotoxicity of anatase-prevailing TiO2 NPs were obtained by comparative proteomics delineating that TiO2 NPs deregulate expression of a variety of proteins and associated pathways. This inevitably results in a decreased cellular ability to detoxify reactive oxygen species and respond to various stress conditions. The study provides novel data that add another piece to the jigsaw of the relation between structural features of NPs and biosafety.
机译:纳米颗粒形式的二氧化钛(TiO2 NPS)属于重要的工业材料。尽管被广泛使用,但仍然存在关于生物安全性的严重矛盾。我们预期这种差异可能是由于缺乏对TiO2 NPS相组成和细胞毒性之间的联系的理解。因此,我们在锐钛矿相位组合物中合成了两种不同类型的双相TiO2 NP。该研究呈现了一种体外数据阵列,表明与具有相等锐钛矿 - 布鲁克钛矿结晶度的TiO 2 NP相比,具有普遍锐钛矿相的TiO 2 NP具有更高的细胞毒性。通过显着抑制代谢活性和上皮和神经细胞样细胞的生长显着提高了这种现象。此外,锐钛矿 - 主要的TiO2 NPS倾向于产生较高量的活性氧物质,导致DNA片段化。通过比较蛋白质组学描绘TiO2 NPS Deregurate各种蛋白质和相关途径的表达,获得进一步了解锐钛矿 - 普及的TiO2 NP的细胞毒性分子方面的见解。这不可避免地导致细胞释放反应性氧物质的细胞能力降低,并响应各种应力条件。该研究提供了新的数据,该数据为NPS和生物安全结构特征之间的关系添加了另一件曲线。

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