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从环肽模板的自组装设计和功能纳米管的性能。

Design and properties of functional nanotubes from the self-assembly of cyclic peptide templates.

机构信息

Key Centre for Polymers & Colloids, School of Chemistry, The University of Sydney, Building F11, Sydney 2006, NSW, Australia.

出版信息

Chem Soc Rev. 2012 Sep 21;41(18):6023-41. doi: 10.1039/c2cs35172b. Epub 2012 Aug 9.

Abstract

β-Sheet forming self assembling cyclic peptides offer a versatile scaffold for the construction and control of hydrogen-bonded nanotube assemblies. These structures have major advantages over other nanoscale tubular structures, including sub-nanometer control over the internal diameter, and the ability to control internal and external chemical functionality. This Tutorial Review presents an overview of nanotubes derived from this class of cyclic peptides. The design rationale for functional nanotubes based on cyclic peptide ring size and chemical functionality is discussed. Additionally, we highlight the recent expansion of the nanotube toolbox through conjugation of (macro)molecules to the cyclic peptides. These provide additional functionality and control nanotube dimensions that could potentially prove beneficial in future applications.

摘要

β-折叠形成的自组装环肽为构建和控制氢键纳米管组装提供了一种通用的支架。与其他纳米管状结构相比,这些结构具有显著的优势,包括对内径的亚纳米级控制,以及控制内外化学功能的能力。本综述介绍了源于这类环肽的纳米管。讨论了基于环肽环大小和化学功能的功能性纳米管的设计原理。此外,我们还强调了通过将(大)分子与环肽缀合来扩展纳米管工具箱的最新进展。这些提供了额外的功能并控制了纳米管的尺寸,这在未来的应用中可能是有益的。

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