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Current investigations into the genotoxicity of zinc oxide and silica nanoparticles in mammalian models in vitro and in vivo: carcinogenic/genotoxic potential, relevant mechanisms and biomarkers, artifacts, and limitations

机译:氧化锌和二氧化硅纳米粒子在哺乳动物模型中的体内和体外遗传毒性的最新研究:致癌/遗传毒性潜力,相关机制和生物标记,人工制品和局限性

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Abstract: Engineered nanoparticles (NPs) are widely used in many sectors, such as food, medicine, military, and sport, but their unique characteristics may cause deleterious health effects. Close attention is being paid to metal NP genotoxicity; however, NP genotoxic/carcinogenic effects and the underlying mechanisms remain to be elucidated. In this review, we address some metal and metal oxide NPs of interest and current genotoxicity tests in vitro and in vivo. Metal NPs can cause DNA damage such as chromosomal aberrations, DNA strand breaks, oxidative DNA damage, and mutations. We also discuss several parameters that may affect genotoxic response, including physicochemical properties, widely used assays/end point tests, and experimental conditions. Although potential biomarkers of nanogenotoxicity or carcinogenicity are suggested, inconsistent findings in the literature render results inconclusive due to a variety of factors. Advantages and limitations related to different methods for investigating genotoxicity are described, and future directions and recommendations for better understanding genotoxic potential are addressed.
机译:摘要:工程纳米颗粒(NPs)被广泛用于食品,医药,军事和体育等许多领域,但其独特的特性可能会造成有害的健康影响。人们正在密切注意金属NP的遗传毒性。然而,NP的遗传毒性/致癌作用及其潜在机制尚待阐明。在这篇综述中,我们讨论了一些感兴趣的金属和金属氧化物纳米颗粒以及当前的体内和体外遗传毒性测试。金属NP会引起DNA损伤,例如染色体畸变,DNA链断裂,氧化性DNA损伤和突变。我们还将讨论可能影响遗传毒性反应的几个参数,包括物理化学性质,广泛使用的测定法/终点测试以及实验条件。尽管建议了潜在的纳米基因毒性或致癌性生物标志物,但由于多种因素,文献中不一致的发现使结果没有定论。描述了与研究遗传毒性不同方法有关的优点和局限性,并提出了未来方向和建议,以更好地了解遗传毒性潜力。

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