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阳离子肽与阴离子物种离子共组装的最新进展

Recent Progress in Ionic Coassembly of Cationic Peptides and Anionic Species.

作者信息

Xie Xiaoming, Zheng Tingting, Li Wen

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Qianjing Avenue 2699, Changchun, 130012, China.

Department of Chemistry, Xinzhou Teachers' University, Xinzhou, Shanxi, 034000, China.

出版信息

Macromol Rapid Commun. 2020 Dec;41(24):e2000534. doi: 10.1002/marc.202000534. Epub 2020 Nov 23.

Abstract

Peptide assembly has been extensively exploited as a promising platform for the creation of hierarchical nanostructures and tailor-made bioactive materials. Ionic coassembly of cationic peptides and anionic species is paving the way to provide particularly important contribution to this topic. In this review, the recent progress of ionic coassembly soft materials derived from the electrostatic coupling between cationic peptides and anionic species in aqueous solution is systematically summarized. The presentation of this review starts from a brief background on the general importance and advantages of peptide-based ionic coassembly. After that, diverse combinations of cationic peptides with small anions, macro- and/or oligo-anions, anionic polymers, and inorganic polyoxometalates are described. Emphasis is placed on the hierarchical structures, value-added properties, and applications. The molecular design of cationic peptides and the general principles behind the ionic coassembled structures are discussed. It is summarized that the combination of interesting and unique characteristics that arise both from the chemical diversity of peptides and the wide range of anionic species may contribute in a variety of output, including drug delivery, tissue engineering, gene transfection, and antibacterial activity. The emergent new phenomena and findings are illustrated. Finally, the outlook for the peptide-based ionic coassembly systems is also presented.

摘要

肽组装已被广泛用作构建分层纳米结构和定制生物活性材料的一个有前景的平台。阳离子肽与阴离子物种的离子共组装正在为这一领域做出特别重要的贡献。在这篇综述中,系统总结了阳离子肽与阴离子物种在水溶液中通过静电耦合形成离子共组装软材料的最新进展。本综述首先简要介绍基于肽的离子共组装的一般重要性和优势。之后,描述了阳离子肽与小阴离子、大阴离子和/或寡阴离子、阴离子聚合物以及无机多金属氧酸盐的各种组合。重点关注分层结构、增值特性和应用。讨论了阳离子肽的分子设计以及离子共组装结构背后的一般原理。总结得出,肽的化学多样性和广泛的阴离子物种所产生的有趣而独特的特性相结合,可能在包括药物递送、组织工程、基因转染和抗菌活性等多种应用中发挥作用。文中还阐述了新出现的现象和发现。最后,还展望了基于肽的离子共组装系统的前景。

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