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调控肽-多酚相互作用以实现具有可控动力学和多功能性的超分子组装涂层

Modulating the Interactions of Peptide-Polyphenol for Supramolecular Assembly Coatings with Controllable Kinetics and Multifunctionalities.

作者信息

Huo Kaiyuan, Liu Wenjie, Shou Zeyu, Wang Hongxiang, Liu Hao, Chen Yang, Zan Xingjie, Wang Qing, Li Na

机构信息

School of Ophthalmology and Optometry, School of Biomedical Engineering, Wenzhou Medical University, Wenzhou, Zhejiang, 325027, China.

Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou Key Laboratory of Perioperative Medicine, Wenzhou, Zhejiang, 325001, China.

出版信息

Adv Sci (Weinh). 2025 Jan;12(3):e2412194. doi: 10.1002/advs.202412194. Epub 2024 Nov 25.

Abstract

Polyphenols and peptides represent two fundamental building blocks in the kingdom of supramolecular assembly (SA) coatings, which have recently attracted considerable interest. Regulating the assembly kinetics of SA coatings is critical to controlling the performance of SA coatings, but this area is still in its infancy, especially in the SA coating of peptide-polyphenol. Herein, a library of oligopeptides with rich diversity, numerous polyphenols, and modulators are explored to reveal their roles in the formation and regulation of SA coating. Citric acid (CA) is an effective regulator of interaction between the polyphenols and peptides to produce peptide-polyphenol coatings, TCP. The electrostatic interaction between tannic acid (TA) and cationic peptide drives the formation of TCP, while the multiple hydrogen bonds between CA and TA and peptide dominate the assembly kinetics. With optimized assembly pH and the mass ratio of TA, CA, and peptide, the thickness of TCP coating deposits onto diverse substrates (glass, silica, titanium, polystyrene) is ≈400 nm with controllable kinetics. The multifunctional TCP coatings are endowed via peptide-coupled functional units, including enhanced cellular adhesion, elevated osteogenic capacity, anti-protein adsorption, and antimicrobial. This work contributes to the understanding of the assembly kinetics and functionalization of peptide-polyphenol coatings.

摘要

多酚和肽是超分子组装(SA)涂层领域的两个基本组成部分,近年来备受关注。调节SA涂层的组装动力学对于控制SA涂层的性能至关重要,但这一领域仍处于起步阶段,尤其是在肽-多酚的SA涂层方面。在此,研究了一系列具有丰富多样性的寡肽、多种多酚和调节剂,以揭示它们在SA涂层形成和调节中的作用。柠檬酸(CA)是多酚与肽之间相互作用的有效调节剂,可产生肽-多酚涂层TCP。单宁酸(TA)与阳离子肽之间的静电相互作用驱动TCP的形成,而CA与TA和肽之间的多个氢键主导组装动力学。通过优化组装pH值以及TA、CA和肽的质量比,TCP涂层在不同基材(玻璃、二氧化硅、钛、聚苯乙烯)上的沉积厚度约为400nm,且动力学可控。多功能TCP涂层通过肽偶联功能单元实现,包括增强细胞粘附、提高成骨能力、抗蛋白质吸附和抗菌性能。这项工作有助于理解肽-多酚涂层的组装动力学和功能化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8010/11744643/257df3a1ec90/ADVS-12-2412194-g005.jpg

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