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首页> 外文期刊>The Science of the Total Environment >DNA damage and ovarian ultrastructural lesions induced by nickel oxide nano-particles in Blaps polycresta (Coleoptera: Tenebrionidae)
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DNA damage and ovarian ultrastructural lesions induced by nickel oxide nano-particles in Blaps polycresta (Coleoptera: Tenebrionidae)

机译:镍氧化镍纳米颗粒诱导的DNA损伤和卵巢超微结构病变(COLEOPTERA:Tenebrionidae)

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摘要

Nickel oxide nanoparticles (NiO-NPs) have extensively used in industrial and consumer products. The present study conducted to gain more knowledge about the safe use of NiO-NPs and also to understand their impact on the environment and biological systems. Herein, we examined the genotoxic and ultra-structural effects of a sublethal dose of NiO-NPs (0.03 mg/g) on the ovarian tissues of the ground beetle, Blaps polycresta. The mean diameter of NiO-NPs was 24.49 ± 3.88 nm, as obtained through transmission electron microscopy (TEM). In terms of DNA damage levels, the frequency of micronucleus (MN) formation was highly significant in the NiO-NPs treated group versus the controls. Besides, NiO-NPs treatment resulted in a significant increase in the tail length of comets. Further, electron microscopy revealed a progressive increase in chromatin condensation of the ovarian nurse and follicular cells, in addition to the accumulation of lysosomes and endo-lysosomes in their cytoplasm. In conclusion, NiO-NPs are capable of gaining access to the ovary of B. polycresta and causing DNA damage and a high degree of cellular toxicity in the ovarian cells. The present study highlights, for the first time, the adverse effects of these NPs to female gonads of insects and raised the concern of its genotoxic potential. It would be of interest to investigate NiO-NPs mediated intracellular ROS generation in future studies.
机译:氧化镍纳米颗粒(NIO-NPS)在工业和消费品中广泛使用。目前的研究旨在获得更多关于安全使用NIO-NP的知识,并了解他们对环境和生物系统的影响。在此,我们检查了在地面甲虫的卵巢组织上的止吐剂量的NIO-NPS(0.03mg / g)的遗传毒性和超结构效应,具有包围的多折叠。通过透射电子显微镜(TEM)获得的NiO-NPS的平均直径为24.49±3.88nm。就DNA损伤水平而言,微核(Mn)形成的频率在NiO-NPS处理基团与对照中非常显着。此外,NIO-NPS处理导致彗星尾部长度显着增加。此外,电子显微镜揭示了卵巢护士和滤泡细胞的染色质缩合的逐渐增加,除了溶酶体和腹腔溶酶体中的细胞质中的积累。总之,NiO-NPS能够获得对B.聚克的卵巢的进入,并在卵巢细胞中引起DNA损伤和高度的细胞毒性。本研究首次亮点,这是对这些NPS对昆虫的女性性腺的不利影响,并提出了遗传毒性的关注。探讨未来研究中的NiO-NPS介导的细胞内ROS生成是有意义的。

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