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一种评估纳米颗粒-蛋白质冠层生物效应的综合方法。

An integrative method for evaluating the biological effects of nanoparticle-protein corona.

作者信息

Hou Yushuang, Tu Shuyang, Zhao Xiaohuan, Li Guangyi, Li Na, Zou Aihua

机构信息

School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai 200237, People's Republic of China.

National Facility for Protein Science in Shanghai, Shanghai Advanced Research Institute (Zhangjiang Laboratory), Chinese Academy of Sciences, Shanghai 201210, People's Republic of China.

出版信息

Biochim Biophys Acta Gen Subj. 2023 Mar;1867(3):130300. doi: 10.1016/j.bbagen.2022.130300. Epub 2022 Dec 25.

Abstract

BACKGROUND

Nanoplastics in the environment can enter the human body through gastrointestinal intake, dermal contact, and pulmonary inhalation, posing a threat to human health. Protein molecules in body fluids will quickly adsorb on the surfaces of the nanoplastics, forming a protein corona, which has implications for the interaction of the nanoplastics with cells and the metabolic pathways of the nanoplastic within cells. For years, practical tools such as dynamic light scattering, transmission electron microscopy, and liquid chromatography have been developed to understand the protein corona of nanoparticles (NPs), either in vitro or in cellular or molecular level. However, an integrated approach to understand the nanoparticles-protein corona is still lacking.

METHODS

Using the most frequently observed environmental nanoplastics, polystyrene nanoplastics (PS), as a standard, we established an integrative structural characterization platform, a biophysical and biochemical evaluation method to investigate the effect of surface charge on protein corona composition. The cellular and molecular mechanisms were also explored through in vitro cellular experiments.

RESULTS

The first integrative method for characterizing biological properties of NPs-protein corona has been established. This method comprehensively covers the critical aspects to understand NPs-protein corona interactions, from structure to function.

CONCLUSIONS

The integrative method for nanoplastics microstructure characterization can be applied to the structural characterization of nanoparticles in nanoscale, which is of universal significance from in vitro characterization to cellular experiments and then to molecular mechanism studies.

GENERAL SIGNIFICANCE

This strategy has high reliability and repeatability and can be applied both in environment and nanomedicine safety assessment.

摘要

背景

环境中的纳米塑料可通过胃肠道摄入、皮肤接触和肺部吸入进入人体,对人类健康构成威胁。体液中的蛋白质分子会迅速吸附在纳米塑料表面,形成蛋白质冠层,这对纳米塑料与细胞的相互作用以及纳米塑料在细胞内的代谢途径具有重要影响。多年来,已经开发出诸如动态光散射、透射电子显微镜和液相色谱等实用工具,用于在体外或细胞或分子水平上了解纳米颗粒(NPs)的蛋白质冠层。然而,仍然缺乏一种综合方法来理解纳米颗粒 - 蛋白质冠层。

方法

以环境中最常观察到的纳米塑料聚苯乙烯纳米塑料(PS)为标准,我们建立了一个综合结构表征平台,一种生物物理和生化评估方法,以研究表面电荷对蛋白质冠层组成的影响。还通过体外细胞实验探索了细胞和分子机制。

结果

建立了第一种表征NPs - 蛋白质冠层生物学特性的综合方法。该方法全面涵盖了从结构到功能理解NPs - 蛋白质冠层相互作用的关键方面。

结论

纳米塑料微观结构表征的综合方法可应用于纳米尺度纳米颗粒的结构表征,从体外表征到细胞实验再到分子机制研究具有普遍意义。

一般意义

该策略具有高可靠性和可重复性,可应用于环境和纳米医学安全评估。

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