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功能性纳米-微米级四足氧化锌的毒性:细胞培养条件、细胞年龄和材料特性的影响

Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.

作者信息

Papavlassopoulos Heike, Mishra Yogendra K, Kaps Sören, Paulowicz Ingo, Abdelaziz Ramzy, Elbahri Mady, Maser Edmund, Adelung Rainer, Röhl Claudia

机构信息

Institute of Toxicology and Pharmacology for Natural Scientists, Christiana Albertina University Kiel, Kiel, Germany.

Functional Nanomaterials, Institute for Materials Science, Christiana Albertina University Kiel, Kiel, Germany.

出版信息

PLoS One. 2014 Jan 13;9(1):e84983. doi: 10.1371/journal.pone.0084983. eCollection 2014.

Abstract

With increasing production and applications of nanostructured zinc oxide, e.g., for biomedical and consumer products, the question of safety is getting more and more important. Different morphologies of zinc oxide structures have been synthesized and accordingly investigated. In this study, we have particularly focused on nano-micro ZnO tetrapods (ZnO-T), because their large scale fabrication has been made possible by a newly introduced flame transport synthesis approach which will probably lead to several new applications. Moreover, ZnO-T provide a completely different morphology then classical spherical ZnO nanoparticles. To get a better understanding of parameters that affect the interactions between ZnO-T and mammalian cells, and thus their biocompatibility, we have examined the impact of cell culture conditions as well as of material properties on cytotoxicity. Our results demonstrate that the cell density of fibroblasts in culture along with their age, i.e., the number of preceding cell divisions, strongly affect the cytotoxic potency of ZnO-T. Concerning the material properties, the toxic potency of ZnO-T is found to be significantly lower than that of spherical ZnO nanoparticles. Furthermore, the morphology of the ZnO-T influenced cellular toxicity in contrast to surface charges modified by UV illumination or O2 treatment and to the material age. Finally, we have observed that direct contact between tetrapods and cells increases their toxicity compared to transwell culture models which allow only an indirect effect via released zinc ions. The results reveal several parameters that can be of importance for the assessment of ZnO-T toxicity in cell cultures and for particle development.

摘要

随着纳米结构氧化锌产量的增加及其在生物医学和消费品等领域的应用,安全性问题变得越来越重要。人们已经合成并研究了不同形态的氧化锌结构。在本研究中,我们特别关注纳米 - 微米级氧化锌四足体(ZnO - T),因为一种新引入的火焰传输合成方法已使其大规模制备成为可能,这可能会带来一些新的应用。此外,ZnO - T与经典的球形氧化锌纳米颗粒相比呈现出完全不同的形态。为了更好地理解影响ZnO - T与哺乳动物细胞相互作用进而影响其生物相容性的参数,我们研究了细胞培养条件以及材料特性对细胞毒性的影响。我们的结果表明,培养的成纤维细胞的细胞密度及其传代次数,即先前细胞分裂的次数,会强烈影响ZnO - T的细胞毒性。关于材料特性,发现ZnO - T的毒性明显低于球形氧化锌纳米颗粒。此外,与紫外线照射或氧气处理改变的表面电荷以及材料老化情况相比,ZnO - T的形态会影响细胞毒性。最后,我们观察到与仅允许通过释放的锌离子产生间接作用的Transwell培养模型相比,四足体与细胞的直接接触会增加其毒性。这些结果揭示了几个对于评估细胞培养中ZnO - T的毒性以及颗粒开发可能具有重要意义的参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a38/3890288/d0337b6ecc97/pone.0084983.g001.jpg

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