Protein Corona of Nanoparticles: Isolation and Analysis

Yinuo Sun, Yaxin Zhou, Mubashar Rehman, Yi-Feng Wang* and Shutao Guo*, 
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引用次数: 0

Abstract

Nanoparticles entering biological systems or fluids inevitably adsorb biomolecules, such as protein, on their surfaces, forming a protein corona. Ensuing, the protein corona endows nanoparticles with a new biological identity and impacts the interaction between the nanoparticles and biological systems. Hence, the development of reliable techniques for protein corona isolation and analysis is key for understanding the biological behaviors of nanoparticles. First, this review systematically outlines the approach for isolating the protein corona, including centrifugation, magnetic separation, size exclusion chromatography, flow-field-flow fractionation, and other emerging methods. Next, we review the qualitative and quantitative characterization methods of the protein corona. Finally, we underscore the necessary steps to advance the efficiency and fidelity of protein corona isolation and characterization on nanoparticle surfaces. We anticipate that these insights into protein corona isolation and characterization methodologies will profoundly influence the development of technologies aimed at elucidating bionano interactions and the role of protein corona in various biomedical applications.

纳米粒子的蛋白质电晕:分离与分析
纳米粒子进入生物系统或流体后,不可避免地会在其表面吸附蛋白质等生物大分子,形成蛋白质电晕。随后,蛋白电晕赋予纳米粒子新的生物特性,并影响纳米粒子与生物系统之间的相互作用。因此,开发可靠的蛋白质电晕分离和分析技术是了解纳米粒子生物学行为的关键。首先,本综述系统地概述了分离蛋白质电晕的方法,包括离心法、磁分离法、尺寸排阻色谱法、流场-流分馏法和其他新兴方法。接下来,我们回顾了蛋白质电晕的定性和定量表征方法。最后,我们强调了提高纳米粒子表面蛋白质电晕分离和表征的效率和准确性的必要步骤。我们预计,这些关于蛋白质电晕分离和表征方法的见解将对旨在阐明仿生纳米相互作用以及蛋白质电晕在各种生物医学应用中的作用的技术开发产生深远影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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