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四种不同类型的铝基纳米颗粒的亚慢性免疫毒性比较。

Comparison of subchronic immunotoxicity of four different types of aluminum-based nanoparticles.

机构信息

Department of Brain Science, Ajou University School of Medicine, Suwon, 16499, Republic of Korea.

National Center for Efficacy Evaluation for Respiratory Disease product, Jeonbuk Department of Research Inhalation Safety, Korea Institute of Toxicology, Jeongeup, Jellobuk-do, Republic of Korea.

出版信息

J Appl Toxicol. 2018 Apr;38(4):575-584. doi: 10.1002/jat.3564. Epub 2017 Nov 23.

Abstract

Nanoparticles (NPs) have recently emerged as an inhalable pollutant, owing to their applications, aluminum-based NPs (Al-NPs) have been prioritized for toxicity testing. In the current study, we compared the pulmonary biopersistence and subsequent toxicity of four different types of Al-NPs (two rod-type aluminum oxide NPs [AlONPs] with different aspect ratios [short (S)- and long (L)-AlONPs], spherical aluminum cerium oxide NPs [AlCeO , AlCeONPs] and spherical γ-aluminum oxide hydroxide nanoparticles [AlOOHNPs]) 13weeks after a single intratracheal instillation, considering the importance of their properties in their toxicity. We found that the pulmonary biopersistence of Al-NPs was strengthened by a high aspect ratio in the rod-type AlONPs and by the presence of hydroxyl groups in the spherical-type Al-NPs. The highest toxicity was observed in the mice treated with AlOOHNPs, which showed low biostability. More importantly, we identified that the commercially available AlCeONPs were Al O -coated CeO NPs, but not AlCeO NPs, although they have been sold under the trade name of AlCeONPs. In conclusion, the aspect ratio and biostability may be important factors in the determination of the biopersistence of NPs and the subsequent biological response. In addition, the physicochemical properties of NPs should be examined in detail before their release into the market to prevent unexpected adverse health effects.

摘要

纳米颗粒(NPs)最近因其应用而成为一种可吸入污染物,其中,基于铝的 NPs(Al-NPs)已被优先用于毒性测试。在本研究中,我们比较了四种不同类型的 Al-NPs(两种具有不同纵横比的棒状氧化铝 NPs[短(S)-和长(L)-AlONPs]、球形铝铈氧化物 NPs[AlCeO,AlCeONPs]和球形 γ- 氧化铝水合纳米颗粒[AlOOHNPs])在单次气管内滴注 13 周后的肺部生物持久性及其随后的毒性,考虑到它们的性质在毒性中的重要性。我们发现,棒状 AlONPs 中的高纵横比和球形 Al-NPs 中的羟基增强了 Al-NPs 的肺部生物持久性。在接受 AlOOHNPs 治疗的小鼠中观察到最高的毒性,其生物稳定性较低。更重要的是,我们发现市售的 AlCeONPs 是 Al O 涂层的 CeO NPs,而不是 AlCeO NPs,尽管它们以 AlCeONPs 的商品名出售。总之,纵横比和生物稳定性可能是决定 NPs 生物持久性和随后生物学反应的重要因素。此外,在将 NPs 投放市场之前,应详细检查其物理化学性质,以防止意外的健康影响。

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