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具有大体积芳基端基的肽缀合物的自组装、生物活性和纳米材料应用。

Self-Assembly, Bioactivity, and Nanomaterials Applications of Peptide Conjugates with Bulky Aromatic Terminal Groups.

机构信息

Department of Chemistry, University of Reading, Whiteknights, Reading RG6 6AD, United Kingdom.

出版信息

ACS Appl Bio Mater. 2023 Feb 20;6(2):384-409. doi: 10.1021/acsabm.2c01041. Epub 2023 Feb 3.

Abstract

The self-assembly and structural and functional properties of peptide conjugates containing bulky terminal aromatic substituents are reviewed with a particular focus on bioactivity. Terminal moieties include Fmoc [fluorenylmethyloxycarbonyl], naphthalene, pyrene, naproxen, diimides of naphthalene or pyrene, and others. These provide a driving force for self-assembly due to π-stacking and hydrophobic interactions, in addition to the hydrogen bonding, electrostatic, and other forces between short peptides. The balance of these interactions leads to a propensity to self-assembly, even for conjugates to single amino acids. The hybrid molecules often form hydrogels built from a network of β-sheet fibrils. The properties of these as biomaterials to support cell culture, or in the development of molecules that can assemble in cells (in response to cellular enzymes, or otherwise) with a range of fascinating bioactivities such as anticancer or antimicrobial activity, are highlighted. In addition, applications of hydrogels as slow-release drug delivery systems and in catalysis and other applications are discussed. The aromatic nature of the substituents also provides a diversity of interesting optoelectronic properties that have been demonstrated in the literature, and an overview of this is also provided. Also discussed are coassembly and enzyme-instructed self-assembly which enable precise tuning and (stimulus-responsive) functionalization of peptide nanostructures.

摘要

本文综述了含有大体积末端芳香取代基的肽缀合物的自组装、结构和功能性质,特别关注其生物活性。末端基团包括 Fmoc [芴甲氧羰基]、萘、芘、萘普生、萘或芘的二酰亚胺,以及其他基团。除了短肽之间的氢键、静电和其他相互作用外,这些基团还提供了自组装的驱动力,这是由于π-堆积和疏水相互作用。这些相互作用的平衡导致了自组装的倾向,即使是对于单个氨基酸的缀合物也是如此。这些杂化分子通常形成由β-折叠纤维网络构成的水凝胶。这些作为生物材料的性质可以支持细胞培养,或者在开发可以在细胞内组装(响应细胞酶或其他方式)的分子方面具有广泛的迷人生物活性,如抗癌或抗菌活性。此外,还讨论了水凝胶作为缓控释药物输送系统以及在催化和其他应用中的应用。取代基的芳香性质还提供了文献中已经证明的各种有趣的光电性质,本文也对此进行了概述。本文还讨论了共组装和酶指导的自组装,它们可以实现肽纳米结构的精确调谐和(刺激响应)功能化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b31f/9945136/5ba719923f4e/mt2c01041_0001.jpg

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