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Toward a molecular understanding of nanoparticle–protein interactions

机译:对纳米粒子与蛋白质相互作用的分子理解

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摘要

Wherever nanoparticles (NPs) come in contact with a living organism, physical and chemical interactions take place between the surfaces of the NPs and biomatter, in particular proteins. When NP are exposed to biological fluids, an adsorption layer of proteins, a “protein corona” forms around the NPs. Consequently, living systems interact with the protein-coated NP rather than with a bare NP. To anticipate biological responses to NPs, we thus require comprehensive knowledge of the interactions at the bio–nano interface. In recent years, a wide variety of biophysical techniques have been employed to elucidate mechanistic aspects of NP–protein interactions. In this brief review, we present the latest findings regarding the composition of the protein corona as it forms on NPs in the blood stream. We also discuss molecular aspects of this adsorption layer and its time evolution. The current state of knowledge is summarized, and issues that still need to be addressed to further advance our understanding of NP–protein interactions are identified.
机译:无论纳米粒子(NP)与生物接触,凡是在NP与生物物质(特别是蛋白质)表面之间发生物理和化学相互作用。当NP暴露于生物液体中时,在NP周围会形成蛋白质的吸附层,即“蛋白质电晕”。因此,生物系统与蛋白包被的NP相互作用,而不是与裸露的NP相互作用。因此,要预测对NP的生物学反应,我们需要对生物-纳米界面相互作用的全面了解。近年来,已经采用了各种各样的生物物理技术来阐明NP-蛋白质相互作用的机理。在这篇简短的评论中,我们介绍了有关蛋白质电晕的最新发现,该蛋白质在血液中的NP上形成。我们还将讨论该吸附层的分子方面及其时间演化。总结了当前的知识状态,并确定了仍需要解决的问题以进一步提高我们对NP-蛋白质相互作用的理解。

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