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富含酪氨酸的寡肽通过共价自组装和一步光交联形成多种纳米结构。

Covalent Self-Assembly and One-Step Photocrosslinking of Tyrosine-Rich Oligopeptides to Form Diverse Nanostructures.

机构信息

National Centre of Applied Microfluidic Chemistry, Department of Chemical Engineering, POSTECH (Pohang University of Science and Technology), Pohang, 790-784, Republic of Korea.

Center for Self-Assembly and Complexity (CSC), Institute for Basic Science (IBS), Pohang, 790-784, Republic of Korea.

出版信息

Angew Chem Int Ed Engl. 2016 Jun 6;55(24):6925-8. doi: 10.1002/anie.201601675. Epub 2016 Apr 8.

Abstract

We present covalently self-assembled peptide hollow nanocapsule and peptide lamella. These biomimetic dityrosine peptide nanostructures are synthesized by one-step photopolymerization of a tyrosine-rich short peptide without the aid of a template. This simple approach offers direct synthesis of fluorescent peptide nanocages and free-standing thin films. The simple crosslinked peptide lamella films provide robust mechanical properties with an elastic modulus of approximately 30 GPa and a hardness of 740 MPa. These nanostructures also allow for the design of peptidosomes. The approach taken here represents a rare example of covalent self-assembly of short peptides into nano-objects, which may be useful as microcompartments and separation membranes.

摘要

我们展示了共价自组装的肽空心纳米胶囊和肽层。这些仿生二酪氨酸肽纳米结构是通过富含酪氨酸的短肽的一步光聚合合成的,无需模板的帮助。这种简单的方法提供了荧光肽纳米笼和独立的薄膜的直接合成。简单的交联肽层膜具有约 30 GPa 的弹性模量和 740 MPa 的硬度,提供了强大的机械性能。这些纳米结构还允许设计肽囊泡。这里采用的方法代表了短肽共价自组装成纳米物体的罕见实例,这可能作为微隔间和分离膜有用。

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