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形状和电荷对常见金纳米结构中蛋白质冠组成的影响。

The influence of shape and charge on protein corona composition in common gold nanostructures.

机构信息

German Federal Institute for Risk Assessment (BfR), Department of Chemical and Product Safety, Berlin, Germany.

Freie Universität Berlin, Institute of Chemistry and Biochemistry, Takustrasse 3, 14195 Berlin, Germany.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Dec;117:111270. doi: 10.1016/j.msec.2020.111270. Epub 2020 Jul 15.

Abstract

With increasing importance of gold nanoparticles (AuNPs) in the medical field, the understanding of their interactions in biological environments is essential. It is known that the exposure to biological fluids of particles in the nanometric range leads to accumulation of proteins on the particle surface proximity, generating the so-called protein corona. This fact can completely change the properties of AuNPs, thus drastically influencing the characteristics and intended purpose of the particles. Therefore, deep insight on the formation and composition of this protein corona is of extreme importance. Between the different factors that can alter the corona formation, our study focuses on the influence of the shape and particle surface charge. In detail, four different shapes of nanometrical scale (spheres, rods, stars and cages) of comparable size were used, all of them stabilized with three different heterofunctionalized poly(ethylene glycol) thiol (R-PEG-SH) linkers (R = OCH, COOH or NH) to check the effect of charge as well. After incubation with human serum, abundant proteins were identified via liquid chromatography-electrospray ionization-tandem mass spectroscopy (LC ESI MS/MS) and compared in terms of their relative abundance. On the basis of statistical evaluations, the shape of our AuNPs showed a greater influence than the surface charge. Especially, cage-shaped AuNPs showed a lower amount of total corona proteins. This shape showed differences in the abundances of individual proteins like albumin, vitronectin and members of the complement system. These results indicate that nanocages could present an improved biocompatibility compared with the other shapes due to the high curvature areas and dense ligation on the flat surfaces that could hinder opsonisation and fast removal by the immune system.

摘要

随着金纳米粒子(AuNPs)在医学领域的重要性不断增加,了解它们在生物环境中的相互作用至关重要。众所周知,纳米级颗粒在生物流体中的暴露会导致蛋白质在颗粒表面附近聚集,从而产生所谓的蛋白质冠。这一事实可以完全改变 AuNPs 的性质,从而极大地影响颗粒的特性和预期用途。因此,深入了解这种蛋白质冠的形成和组成至关重要。在可能改变冠形成的不同因素中,我们的研究侧重于形状和颗粒表面电荷的影响。具体来说,我们使用了四种不同形状的纳米级(球体、棒体、星型和笼型)尺寸相当的纳米粒子,它们都用三种不同的杂功能化聚乙二醇硫醇(R-PEG-SH)接头(R=OCH、COOH 或 NH)稳定,以检查电荷的影响。与人类血清孵育后,通过液相色谱-电喷雾串联质谱(LC ESI MS/MS)鉴定出大量蛋白质,并根据其相对丰度进行比较。基于统计评估,我们 AuNPs 的形状比表面电荷的影响更大。特别是笼状 AuNPs 表现出较低的总冠蛋白量。这种形状在白蛋白、纤连蛋白和补体系统成员等个别蛋白质的丰度上表现出差异。这些结果表明,由于高曲率区域和在平坦表面上的密集连接,纳米笼可能比其他形状具有更好的生物相容性,这可能会阻碍调理作用和免疫系统的快速清除。

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