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分子自组装和设计肽两亲物的应用。

Molecular self-assembly and applications of designer peptide amphiphiles.

机构信息

Biological Physics Laboratory, School of Physics and Astronomy, University of Manchester, Schuster Building, Oxford Road, Manchester, UK M13 9PL.

出版信息

Chem Soc Rev. 2010 Sep;39(9):3480-98. doi: 10.1039/b915923c. Epub 2010 May 24.

Abstract

Short synthetic peptide amphiphiles have recently been explored as effective nanobiomaterials in applications ranging from controlled gene and drug release, skin care, nanofabrication, biomineralization, membrane protein stabilization to 3D cell culture and tissue engineering. This range of applications is heavily linked to their unique nanostructures, remarkable simplicity and biocompatibility. Some peptide amphiphiles also possess antimicrobial activities whilst remaining benign to mammalian cells. These attractive features are inherently related to their selective affinity to different membrane interfaces, high capacity for interfacial adsorption, nanostructuring and spontaneous formation of nano-assemblies. Apart from sizes, the primary sequences of short peptides are very diverse as they can be either biomimetic or de novo designed. Thus, their self-assembling mechanistic processes and the nanostructures also vary enormously. This critical review highlights recent advances in studying peptide amphiphiles, focusing on the formation of different nanostructures and their applications in diverse fields. Many interesting features learned from peptide self-organisation and hierarchical templating will serve as useful guidance for functional materials design and nanobiotechnology (123 references).

摘要

短肽两亲分子最近被探索作为有效的纳米生物材料,应用范围从控制基因和药物释放、皮肤护理、纳米制造、生物矿化、膜蛋白稳定到 3D 细胞培养和组织工程。这些应用范围与它们独特的纳米结构、显著的简单性和生物相容性密切相关。一些肽两亲分子还具有抗菌活性,同时对哺乳动物细胞保持良性。这些吸引人的特性与它们对不同膜界面的选择性亲和力、在界面上吸附的高容量、纳米结构和纳米组装的自发形成内在相关。除了大小之外,短肽的一级序列非常多样化,因为它们可以是仿生的或从头设计的。因此,它们的自组装机制过程和纳米结构也有很大的不同。这篇评论性文章重点介绍了肽两亲分子的最新研究进展,包括不同纳米结构的形成及其在不同领域的应用。从肽自组织和层次模板中获得的许多有趣特征将为功能材料设计和纳米生物技术提供有用的指导(123 个参考文献)。

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