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蛋白质解吸动力学取决于观察的时间尺度。

Protein Desorption Kinetics Depends on the Timescale of Observation.

机构信息

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, P. R. China.

University of Science and Technology of China, Hefei 230026, P. R. China.

出版信息

Biomacromolecules. 2022 Nov 14;23(11):4709-4717. doi: 10.1021/acs.biomac.2c00917. Epub 2022 Oct 7.

Abstract

The presence of so-called reversible and irreversible protein adsorption on solid surfaces is well documented in the literature and represents the basis for the development of nanoparticles and implant materials to control interactions in physiological environments. Here, using a series of complementary single-molecule tracking approaches appropriate for different timescales, we show that protein desorption kinetics is much more complex than the traditional reversible-irreversible binary picture. Instead, we find that the surface residence time distribution of adsorbed proteins transitions from power law to exponential behavior when measured over a large range of timescales (10-10 s). A comparison with macroscopic results obtained using a quartz crystal microbalance suggested that macroscopic measurements have generally failed to observe such nonequilibrium phenomena because they are obscured by ensemble-averaging effects. These findings provide new insights into the complex phenomena associated with protein adsorption and desorption.

摘要

文献中已有大量关于固体表面上所谓的可逆和不可逆蛋白质吸附的记载,这为纳米粒子和植入材料的开发提供了基础,以控制生理环境中的相互作用。在这里,我们使用一系列适用于不同时间尺度的互补单分子跟踪方法,表明蛋白质解吸动力学比传统的可逆-不可逆二元图像要复杂得多。相反,我们发现,当在很大的时间范围内(10-10 s)进行测量时,吸附蛋白质的表面停留时间分布从幂律转变为指数行为。与使用石英晶体微天平获得的宏观结果进行比较表明,宏观测量通常未能观察到这种非平衡现象,因为它们被平均效应所掩盖。这些发现为与蛋白质吸附和解吸相关的复杂现象提供了新的见解。

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