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铁硒纳米颗粒对两栖类幼虫撒哈拉蛙氧化应激反应、组织病理学及核损伤的亚慢性毒性

Subchronic toxicity of iron-selenium nanoparticles on oxidative stress response, histopathological, and nuclear damage in amphibian larvae Rana saharica.

作者信息

Meddeb El Rym, Trea Fouzia, Djekoun Abdelmalik, Nasri Hichem, Ouali Kheireddine

机构信息

Faculty of Sciences, Laboratory of Environmental Biomonitoring, Badji-Mokhtar University, Annaba, Algeria.

Faculty of Sciences, Materials Physics Laboratory, Badji-Mokhtar University, Annaba, Algeria.

出版信息

Environ Sci Pollut Res Int. 2023 Nov;30(52):112321-112335. doi: 10.1007/s11356-023-30063-0. Epub 2023 Oct 13.

Abstract

In this work, we evaluated the subchronic toxicity of FeSe nanoparticles (NPs) in tadpoles of Rana saharica. Tadpoles were exposed for 1-3 weeks to FeSe NPs at 5 mg/L and 100 mg/L rates. Parameters of oxidative stress were measured in whole larvae, and the micronucleus test was performed on circulating blood erythrocytes. We noted a disturbance of the detoxification systems. Enzymatic and non-enzymatic data showed that exposure to FeSe NPs involved a highly significant depletion of GSH, a significant increase in GST activity, and a lipid peroxidation associated with a highly significant increase in MDA. We also noted a neurotoxic effect characterized by a significant inhibition of AChE activity. A micronucleus test showed concentration-dependent DNA damage. This research reveals that these trace elements, in their nanoform, can cause significant neurotoxicity, histopathologic degeneration, cellular and metabolic activity, and genotoxic consequences in Rana larvae.

摘要

在本研究中,我们评估了硒化铁纳米颗粒(NPs)对撒哈拉蛙蝌蚪的亚慢性毒性。将蝌蚪以5毫克/升和100毫克/升的剂量暴露于硒化铁纳米颗粒中1至3周。在整个幼虫中测量氧化应激参数,并对循环血液红细胞进行微核试验。我们注意到解毒系统受到干扰。酶学和非酶学数据表明,暴露于硒化铁纳米颗粒会导致谷胱甘肽(GSH)显著消耗、谷胱甘肽S-转移酶(GST)活性显著增加以及脂质过氧化,同时丙二醛(MDA)含量也显著增加。我们还注意到一种神经毒性效应,其特征是乙酰胆碱酯酶(AChE)活性受到显著抑制。微核试验显示DNA损伤具有浓度依赖性。这项研究表明,这些微量元素的纳米形式可在撒哈拉蛙幼虫中引起显著的神经毒性、组织病理学退化、细胞和代谢活性以及遗传毒性后果。

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