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首页> 外文期刊>Nanomedicine Journal >Evaluation of epigenetic changes of liver tissue induced by oral administration of Titanium dioxide nanoparticles and possible protective role of Nigella Sativa oil, in adult male albino rats
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Evaluation of epigenetic changes of liver tissue induced by oral administration of Titanium dioxide nanoparticles and possible protective role of Nigella Sativa oil, in adult male albino rats

机译:评价成年雄性白化病大鼠口服二氧化钛纳米颗粒诱导的肝组织的表观遗传学变化以及银杏叶油的可能保护作用

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Objective (s): Titanium dioxide nanoparticles (TiO2 NPs) have been recognized as biologically inert material and have been used in a multitude of applications. Nevertheless, the negative impact on the human health is not yet well understood. Aim of the work: The study attempted to evaluate the epigenetic changes of the genome, in the form of DNA methylation in liver tissue samples, resulting from oral administration of TiO2 NPs (mixed rutile and anatase) in adult male albino rats. Furthermore, whether the Nigella sativa oil (NSO) can prevent the toxic effects of TiO2 NPs.Materials and Methods: Thirty-two adult male albino rats were divided into four groups. (I) control, (II) nigella sativa oil, (III) TiO2 NPs and (IV) TiO2 NPs + nigella sativa oil. The impact of TiO2 NPs on the global DNA methylation and the oxidative status were assessed.Results: Among the study groups, TiO2 NPs exposure provoked oxidative stress; increased blood levels of MDA and decreased reduced glutathione (GSH) level. The global DNA methylation levels decreased after exposure to titanium nanoparticles. Significant differences were recorded between the control group and the group receiving TiO2 NPs. Marked improvement was noticed after supplementation of nigella sativa oil in terms of DNA methylation and oxidative stress markers. Conclusion: Oral administration of TiO2 NPs caused global DNA hypo-methylation in liver tissue samples. The epigenetic damage raises the concern about the safety associated with applications of the TiO2 NPs. The maintenance of DNA methylation patterns by Nigella sativa oil has a role in protection against genomic instability.
机译:目标:二氧化钛纳米颗粒(TiO2 NPs)被认为是具有生物惰性的材料,已被用于多种应用中。然而,对人类健康的负面影响尚不十分清楚。工作目的:这项研究试图评估成年雄性白化病大鼠口服TiO2 NP(金红石和锐钛矿的混合物)后,以肝脏组织样本中DNA甲基化的形式评估基因组的表观遗传学变化。此外,Nigella sativa oil(NSO)是否能预防TiO2 NPs的毒性作用。材料与方法:将32只成年雄性白化病大鼠分为四组。 (I)对照,(II)苜蓿油,(III)TiO2 NP和(IV)TiO2 NP +苜蓿油。结果:在研究组中,TiO2 NPs暴露引起氧化应激;而TiO2 NPs暴露对氧化应激的影响。血液中MDA水平升高,而谷胱甘肽(GSH)水平降低。暴露于钛纳米颗粒后,总体DNA甲基化水平下降。对照组和接受TiO2 NP的组之间记录了显着差异。在DNA甲基化和氧化应激标记物方面,补充紫花苜蓿油后发现显着改善。结论:口服TiO2 NPs导致肝脏组织样品中的整体DNA甲基化不足。表观遗传损伤引起人们对与TiO2 NP的应用相关的安全性的担忧。 Nigella sativa油对DNA甲基化模式的维持对防止基因组不稳定具有一定作用。

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