Molecular and cytogenetic assessment of zinc nanoparticles on Vicia faba plant cells.

H. Mahmoud
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引用次数: 5

Abstract

Abstract Nanotechnology is an emerging multidisciplinary field with a wide range of applications in agriculture, cancer therapy, targeted drug delivery and cosmetic industry. Nevertheless, unspecified release of nanoparticles (NPs) into the ecosystem has raised global concern about their potential toxic effects. In the present study, the effect of different concentrations of ZnO NPs were evaluated on molecular DNA level, on mitotic and meiotic division of Vicia faba plant. The data obtained using ISSR assay showed change in bands number in all tested samples. The highest polymorphic bands recorded are 36 and 34 bands at samples treated with 50.00 and 37.50 μg/mL of ZnO NPs respectively, as compared with untreated plants. In addition to appearance and disappearance of bands in ISSR profiles, a decrease in genetic template stability (GTS) values was recorded with increasing the concentration. The GTS value recorded 58.62% with the highest concentration (50.00 μg/mL); while recorded 67.82% in samples treated with the lowest concentration (6.25 μg/mL) of ZnO NPs. High GTS value indicates that the genome is less prone to alterations in its DNA, whereas low GTS value indicates greater chances of DNA alteration. On the other hand, the cytotoxic effect of ZnO NPs as indicated by inhibiting mitotic and meiotic division and production of chromosomal aberrations such as chromosome breaks was confirmed by their effect on DNA profiles in Vicia faba plant. This study revealed that higher concentrations of Zinc oxide nanoparticles (ZnO NPs) produce genotoxic effects which indirectly can cause health risks to the human populations. Further studies focused over elucidating the fate and behaviour of ZnO-NPs in complex environmental matrices are needed to safeguard ecosystem functioning as well as human kind. However, to the best of our understanding no molecular studies of ZnO-NPs on Vicia faba L. has been reported.
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锌纳米颗粒对蚕豆细胞的分子和细胞遗传学研究。
纳米技术是一个新兴的多学科领域,在农业、癌症治疗、靶向给药和化妆品等领域有着广泛的应用。然而,纳米颗粒(NPs)释放到生态系统中引起了全球对其潜在毒性影响的关注。本文研究了不同浓度氧化锌NPs对蚕豆分子DNA水平、有丝分裂和减数分裂的影响。利用ISSR法获得的数据显示,所有测试样品的条带数都发生了变化。氧化锌NPs浓度为50.00 μg/mL和37.50 μg/mL时,与未处理的植株相比,最多的多态性条带分别为36条和34条。除了ISSR谱带的出现和消失外,遗传模板稳定性(GTS)值也随着浓度的增加而降低。GTS值为58.62%,最高浓度为50.00 μg/mL;最低氧化锌NPs浓度(6.25 μg/mL)处理的样品中占67.82%。GTS值高表明基因组不易发生DNA改变,而GTS值低表明DNA改变的可能性更大。另一方面,氧化锌NPs对蚕豆DNA谱的影响证实了氧化锌NPs的细胞毒性作用,氧化锌NPs通过抑制有丝分裂和减数分裂分裂以及染色体畸变(如染色体断裂)的产生而得到证实。本研究表明,高浓度氧化锌纳米颗粒(ZnO NPs)可产生遗传毒性效应,间接对人类健康造成危害。进一步研究ZnO-NPs在复杂环境基质中的命运和行为是保护生态系统功能和人类的必要条件。然而,据我们所知,没有关于ZnO-NPs在蚕豆上的分子研究报道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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