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电荷问题:两亲性肽的静电协同组装。

A Matter of Charge: Electrostatically Tuned Coassembly of Amphiphilic Peptides.

机构信息

Ilse Katz Institute (IKI) for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.

Department of Chemistry, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.

出版信息

Small. 2024 Nov;20(47):e2404324. doi: 10.1002/smll.202404324. Epub 2024 Aug 18.

Abstract

Coassembly of peptide biomaterials offers a compelling avenue to broaden the spectrum of hierarchically ordered supramolecular nanoscale structures that may be relevant for biomedical and biotechnological applications. In this work coassemblies of amphiphilic and oppositely charged, anionic and cationic, β-sheet peptides are studied, which may give rise to a diverse range of coassembled forms. Mixtures of the peptides show significantly lower critical coassembly concentration (CCC) values compared to those of the individual pure peptides. Intriguingly, the highest formation of coassembled fibrils is found to require excess of the cationic peptide whereas equimolar mixtures of the peptides exhibited the maximum folding into β-sheet structures. Mixtures of the peptides coassembled sequentially from solutions at concentrations surpassing each peptide's intrinsic critical assembly concentration (CAC), are also found to require a higher portion of the cationic peptide to stabilize hydrogels. This study illuminates a systematic investigation of oppositely charged β-sheet peptides over a range of concentrations, in solutions and in hydrogels. The results may be relevant to the fundamental understanding of such intricate charge-driven assembly systems and to the formulation of peptide-based nanostructures with diverse functionalities.

摘要

肽类生物材料的共组装为拓宽与生物医学和生物技术应用相关的多层次有序超分子纳米结构的范围提供了一条诱人的途径。在这项工作中,研究了两亲性和带相反电荷的、阴离子和阳离子的β-折叠肽的共组装,这可能会产生多种共组装形式。与单独的纯肽相比,混合物的临界共组装浓度 (CCC) 值显著降低。有趣的是,发现形成共组装纤维的最高比例需要过量的阳离子肽,而肽的等摩尔混合物则表现出最大的β-折叠结构折叠。还发现,在超过每种肽固有临界组装浓度 (CAC) 的浓度下,从溶液中顺序共组装的肽混合物需要更高比例的阳离子肽来稳定水凝胶。这项研究系统地研究了一系列浓度下带相反电荷的β-折叠肽,包括在溶液中和水凝胶中。这些结果可能与对这种复杂的电荷驱动组装系统的基本理解以及具有多种功能的基于肽的纳米结构的配方有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6424/11579972/81b877b8e225/SMLL-20-2404324-g005.jpg

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