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金和银纳米颗粒与人体血浆的相互作用:蛋白质冠层分析揭示特定结合模式。

Interaction of gold and silver nanoparticles with human plasma: Analysis of protein corona reveals specific binding patterns.

作者信息

Lai Wenjia, Wang Qingsong, Li Lumeng, Hu Zhiyuan, Chen Jiankui, Fang Qiaojun

机构信息

Key Laboratory for Biological Effects of Nanomaterials and Nanosafety of Chinese Academy of Sciences, Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing, 100190, P.R. China.

The National Laboratory of Protein Engineering and Plant Genetic Engineering, College of Life Sciences, Peking University, Beijing, 100871, P.R. China.

出版信息

Colloids Surf B Biointerfaces. 2017 Apr 1;152:317-325. doi: 10.1016/j.colsurfb.2017.01.037. Epub 2017 Jan 20.

Abstract

Determining how nanomaterials interact with plasma will assist in understanding their effects on the biological system. This work presents a systematic study of the protein corona formed from human plasma on 20nm silver and gold nanoparticles with three different surface modifications, including positive and negative surface charges. The results show that all nanoparticles, even those with positive surface modifications, acquire negative charges after interacting with plasma. Approximately 300 proteins are identified on the coronas, while 99 are commonly found on each nanomaterial. The 20 most abundant proteins account for over 80% of the total proteins abundance. Remarkably, the surface charge and core of the nanoparticles, as well as the isoelectric point of the plasma proteins, are found to play significant roles in determining the nanoparticle coronas. Albumin and globulins are present at levels of less than 2% on these nanoparticle coronas. Fibrinogen, which presents in the plasma but not in the serum, preferably binds to negatively charged gold nanoparticles. These observations demonstrate the specific plasma protein binding pattern of silver and gold nanoparticles, as well as the importance of the surface charge and core in determining the protein corona compositions. The potential downstream biological impacts of the corona proteins were also investigated.

摘要

确定纳米材料如何与血浆相互作用将有助于理解它们对生物系统的影响。这项工作对由人血浆在具有三种不同表面修饰(包括正表面电荷和负表面电荷)的20纳米银和金纳米颗粒上形成的蛋白质冠层进行了系统研究。结果表明,所有纳米颗粒,即使是那些具有正表面修饰的纳米颗粒,在与血浆相互作用后都会获得负电荷。在蛋白质冠层上鉴定出约300种蛋白质,而在每种纳米材料上通常发现99种。最丰富的20种蛋白质占总蛋白质丰度的80%以上。值得注意的是,发现纳米颗粒的表面电荷和核心以及血浆蛋白质的等电点在决定纳米颗粒蛋白质冠层方面起着重要作用。白蛋白和球蛋白在这些纳米颗粒蛋白质冠层上的含量低于2%。存在于血浆中但不存在于血清中的纤维蛋白原优先结合带负电荷的金纳米颗粒。这些观察结果证明了银和金纳米颗粒特定的血浆蛋白质结合模式,以及表面电荷和核心在决定蛋白质冠层组成方面的重要性。还研究了冠层蛋白质潜在的下游生物学影响。

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