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TiO2-NPs 和镉共同暴露:对斜带石斑鱼胚胎细胞遗传和基因组 DNA 损伤的体外评估。

TiO-NPs and cadmium co-exposure: in vitro assessment of genetic and genomic DNA damage on Dicentrarchus labrax embryonic cells.

机构信息

Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania "Luigi Vanvitelli", Caserta, Italy.

Department of Woman, Child and General and Special Surgery, University of Campania "Luigi Vanvitelli", Napoli, Italy.

出版信息

Environ Sci Pollut Res Int. 2022 Sep;29(41):62208-62218. doi: 10.1007/s11356-021-17645-6. Epub 2021 Nov 26.

Abstract

The increased titanium dioxide nanoparticles (TiO-NPs) spread and their interaction with organic and inorganic pollutants arouses concern for the potential hazards for organisms and environment. This study tested in vitro the genotoxic effects of TiO-NPs (1 μg/mL) and cadmium (Cd) (0.1 μg/mL) co-exposure using Dicentrarchus labrax embryonic cells (DLEC) as experimental model. The genotoxicity tests (Comet assay, Diffusion Assay and Random Amplification of Polymorphic DNA (RAPD-PCR) were conducted after 3, 24 and 48 hours of exposure to TiO-NPs and Cd alone and in combination. The results showed that the percentage of DNA damage and apoptotic cells increases following 48 hours TiO-NPs exposure, while DNA instability was detected for all the times tested. Cd induced genotoxic effects starting from 3 hour-exposure and for all the treatment times. Cd + TiO-NPs co-exposure did not cause any genomic damage or apoptosis for all the exposure times. The possibility that Cd and TiO-NPs form aggregates no longer able of penetrating the nucleus and damaging the genetic material is discussed.

摘要

越来越多的二氧化钛纳米粒子(TiO-NPs)扩散,它们与有机和无机污染物的相互作用引起了人们对生物体和环境潜在危害的关注。本研究以牙鲆胚胎细胞(DLEC)为实验模型,检测了 TiO-NPs(1μg/mL)和镉(Cd)(0.1μg/mL)共暴露的体外遗传毒性效应。在暴露于 TiO-NPs 和 Cd 单独以及联合 3、24 和 48 小时后,进行了遗传毒性试验(彗星试验、扩散试验和随机扩增多态性 DNA(RAPD-PCR)。结果表明,48 小时 TiO-NPs 暴露后,DNA 损伤和凋亡细胞的百分比增加,而所有测试时间均检测到 DNA 不稳定性。Cd 从 3 小时暴露开始引起遗传毒性效应,并且在所有处理时间均如此。Cd+TiO-NPs 共暴露在所有暴露时间均未引起任何基因组损伤或凋亡。讨论了 Cd 和 TiO-NPs 形成不再能够穿透细胞核并破坏遗传物质的聚集体的可能性。

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