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两性离子肽增强透明质酸修饰表面的抗蛋白质性能。

Zwitterionic Peptide Enhances Protein-Resistant Performance of Hyaluronic Acid-Modified Surfaces.

作者信息

Ye Huijun, Che Jinjing, Huang Renliang, Qi Wei, He Zhimin, Su Rongxin

机构信息

State Key Laboratory of Chemical Engineering, Tianjin Key Laboratory of Membrane Science and Desalination Technology, School of Chemical Engineering and Technology, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin University, 92 Weijin Road, Nankai District, Tianjin 300072, P. R. China.

State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology and Toxicology, 27 Taiping Road, Haidian Distict, Beijing 100085, P. R. China.

出版信息

Langmuir. 2020 Mar 3;36(8):1923-1929. doi: 10.1021/acs.langmuir.9b03856. Epub 2020 Feb 19.

Abstract

A convenient and efficient approach for the surface modification of antifouling materials is highly desirable in numerous applications like affinity-based biosensors. Herein, we fabricated a hybrid antifouling coating on Au surfaces, with thiolated hyaluronic acid (HA) being chemically adsorbed to Au surfaces by the "graft to" approach, followed by a self-assembly of a smaller zwitterionic peptide named p-EK to obtain HA/p-EK-modified surfaces. The real-time sensorgrams of surface plasmon resonance biosensor manifested the successful modification of HA and p-EK on Au surfaces, indicating that there were some bare Au substrates on the HA-modified surfaces for peptide binding. The obtained HA/p-EK surfaces exhibited high hydrophilicity with a water contact angle of 9°. Quartz crystal microbalance and surface plasmon resonance experiments verified that further grafting the zwitterionic p-EK peptide on HA-modified surfaces could enhance the antifouling performance by one time. The improved protein resistance could be mainly contributed by the modification of the zwitterionic peptide that shields the exposed Au substrates from interacting with protein foulings. This strategy by grafting a smaller zwitterionic peptide might provide a novel way to achieve an enhanced protein-resistant performance of the macromolecular coating obtained by the "graft to" surface modification approach.

摘要

在诸如基于亲和的生物传感器等众多应用中,非常需要一种方便高效的防污材料表面改性方法。在此,我们在金表面制备了一种混合防污涂层,通过“接枝到”方法将硫醇化透明质酸(HA)化学吸附到金表面,随后一种名为p-EK的较小两性离子肽进行自组装,以获得HA/p-EK改性表面。表面等离子体共振生物传感器的实时传感图表明HA和p-EK成功修饰在金表面,这表明在HA修饰的表面上存在一些裸露的金基底用于肽结合。所获得的HA/p-EK表面表现出高亲水性,水接触角为9°。石英晶体微天平与表面等离子体共振实验证实,在HA修饰的表面上进一步接枝两性离子p-EK肽可使防污性能提高一倍。蛋白质抗性的提高主要归因于两性离子肽的修饰,该修饰可保护暴露的金基底不与蛋白质污垢相互作用。通过接枝较小两性离子肽的这种策略可能为实现通过“接枝到”表面改性方法获得的大分子涂层增强的抗蛋白质性能提供一种新途径。

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