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基于丝绸的纳米材料的设计、制造与功能

Design, Fabrication, and Function of Silk-Based Nanomaterials.

作者信息

Wang Yu, Guo Jin, Zhou Liang, Ye Chao, Omenetto Fiorenzo G, Kaplan David L, Ling Shengjie

机构信息

Department of Biomedical Engineering, Tufts University, MA 02155, USA.

Department of Biomedical Engineering, Tufts University, MA 02155, USA; Department of Chemical and Biological Engineering, Tufts University, MA 02155, USA.

出版信息

Adv Funct Mater. 2018 Dec 27;28(52). doi: 10.1002/adfm.201805305. Epub 2018 Nov 12.

Abstract

Animal silks are built from pure protein components and their mechanical performance, such as strength and toughness, often exceed most engineered materials. The secret to this success is their unique nanoarchitectures that are formed through the hierarchical self-assembly of silk proteins. This natural material fabrication process in sharp contrast to the production of artificial silk materials, which usually are directly constructed as bulk structures from silk fibroin (SF) molecular. In recent years, with the aim of understanding and building better silk materials, a variety of fabrication strategies have been designed to control nanostructures of silks or to create functional materials from silk nanoscale building blocks. These emerging fabrication strategies offer an opportunity to tailor the structure of SF at the nanoscale and provide a promising route to produce structurally and functionally optimized silk nanomaterials. Here, we review the critical roles of silk nanoarchitectures on property and function of natural silk fibers, outline the strategies of utilization of these silk nanobuilding blocks, and we provide a critical summary of state of the art in the field to create silk nanoarchitectures and to generate silk-based nanocomponents. Further, such insights suggest templates to consider for other materials systems.

摘要

动物丝由纯蛋白质成分构成,其机械性能,如强度和韧性,常常超过大多数工程材料。这种成功的秘诀在于其独特的纳米结构,这些结构是通过丝蛋白的分级自组装形成的。这种天然材料制造过程与人工丝材料的生产形成鲜明对比,人工丝材料通常是由丝素蛋白(SF)分子直接构建成块状结构。近年来,为了理解和制造更好的丝材料,人们设计了各种制造策略来控制丝的纳米结构,或从丝纳米级构建块制造功能材料。这些新兴的制造策略为在纳米尺度上定制SF的结构提供了机会,并为生产结构和功能优化的丝纳米材料提供了一条有前景的途径。在此,我们综述了丝纳米结构对天然丝纤维性能和功能的关键作用,概述了利用这些丝纳米构建块的策略,并对该领域中创建丝纳米结构和生成基于丝的纳米组件的最新技术进行了批判性总结。此外,这些见解为其他材料系统提供了可考虑的模板。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/058c/7241600/bbc0e5898298/nihms-1060898-f0001.jpg

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