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70纳米和20纳米的银纳米颗粒对人类中性粒细胞生物学特性的影响不同。

Silver nanoparticles of 70 nm and 20 nm affect differently the biology of human neutrophils.

作者信息

Poirier Michelle, Simard Jean-Christophe, Girard Denis

机构信息

a Laboratory for the Research on Inflammation and Physiology of Granulocytes , University of Québec, INRS-Institut Armand-Frappier , Laval , Québec , Canada.

出版信息

J Immunotoxicol. 2016 May;13(3):375-85. doi: 10.3109/1547691X.2015.1106622. Epub 2015 Nov 30.

Abstract

The influence of size of nanoparticles (NP), especially in regard to pulmonary toxicity, has been widely investigated. In general, NP with smaller diameters are more pro-inflammatory in vivo, at least in terms of neutrophil influx. Nevertheless, the influence of size of NP on polymorphonuclear neutrophil (PMN) cell biology is poorly documented. In the study here, it was decided to determine if AgNP with a diameter of 70 nm (AgNP70) will alter the biology of human PMN similarly to AgNP20 previously reported to induce apoptosis and inhibit de novo protein synthesis. The results here indicated that, in contrast to AgNP20, AgNP70 delayed PMN apoptosis. However, both AgNP20 and AgNP70 inhibited de novo protein synthesis. Both forms of AgNP did not significantly increase reactive oxygen species (ROS) production, but AgNP20 significantly increased the cell production of the CXCL8 chemokine (IL-8). In addition, AgNP20, but not AgNP70, induced the release of albumin and matrix metalloproteinase-9 (MMP-9/gelatinase B) into culture supernatants. Consistent with this latter observation, gelatinase activity was increased by AgNP20, as assessed by zymography. From these outcomes, it is concluded that two NP with different initial diameters can possess similar - as well as distinct - biological properties in modulating human PMN functions. These outcomes are testimony to the complexity of the modes of action of NP at the cellular level.

摘要

纳米颗粒(NP)的大小影响,尤其是在肺部毒性方面,已得到广泛研究。一般来说,直径较小的NP在体内更具促炎作用,至少在中性粒细胞流入方面是这样。然而,关于NP大小对多形核中性粒细胞(PMN)细胞生物学的影响,文献记载较少。在本研究中,我们决定确定直径为70纳米的银纳米颗粒(AgNP70)是否会像先前报道的能诱导细胞凋亡并抑制从头蛋白质合成的AgNP20一样,改变人类PMN的生物学特性。此处结果表明,与AgNP20不同,AgNP70延迟了PMN的凋亡。然而,AgNP20和AgNP70均抑制了从头蛋白质合成。两种形式的AgNP均未显著增加活性氧(ROS)的产生,但AgNP20显著增加了CXCL8趋化因子(IL - 8)的细胞产生。此外,AgNP20而非AgNP70诱导白蛋白和基质金属蛋白酶 - 9(MMP - 9/明胶酶B)释放到培养上清液中。与后一观察结果一致,通过酶谱分析评估,AgNP20增加了明胶酶活性。从这些结果可以得出结论,两种初始直径不同的NP在调节人类PMN功能方面可具有相似以及不同的生物学特性。这些结果证明了NP在细胞水平作用模式的复杂性。

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