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为可持续生物设备设计天然和重组丝绸

Engineering Natural and Recombinant Silks for Sustainable Biodevices.

作者信息

Shen Xinchen, Shi Haoyuan, Wei Hongda, Wu Boxuan, Xia Qingyuan, Yeo Jingjie, Huang Wenwen

机构信息

The Zhejiang University - University of Edinburgh Institute, Zhejiang University School of Medicine, Zhejiang University, Hangzhou, China.

J2 Lab for Engineering Living Materials, Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, NY, United States.

出版信息

Front Chem. 2022 May 5;10:881028. doi: 10.3389/fchem.2022.881028. eCollection 2022.

Abstract

Silk fibroin (SF) is a structural protein derived from natural silkworm silks. Materials fabricated based on SF usually inherit extraordinary physical and biological properties, including high mechanical strength, toughness, optical transparency, tailorable biodegradability, and biocompatibility. Therefore, SF has attracted interest in the development of sustainable biodevices, especially for emergent bio-electronic technologies. To expand the function of current silk devices, the SF characteristic sequence has been used to synthesize recombinant silk proteins that benefit from SF and other functional peptides, such as stimuli-responsive elastin peptides. In addition to genetic engineering methods, innovated chemistry modification approaches and improved material processing techniques have also been developed for fabricating advanced silk materials with tailored chemical features and nanostructures. Herein, this review summarizes various methods to synthesize functional silk-based materials from different perspectives. This review also highlights the recent advances in the applications of natural and recombinant silks in tissue regeneration, soft robotics, and biosensors, using SF and silk-elastin-like proteins (SELPs) as examples.

摘要

丝素蛋白(SF)是一种源自天然蚕丝的结构蛋白。基于丝素蛋白制造的材料通常具有非凡的物理和生物学特性,包括高机械强度、韧性、光学透明度、可定制的生物降解性和生物相容性。因此,丝素蛋白在可持续生物设备的开发中引起了关注,特别是对于新兴的生物电子技术。为了扩展当前丝绸设备的功能,丝素蛋白特征序列已被用于合成重组丝蛋白,这些重组丝蛋白受益于丝素蛋白和其他功能肽,如刺激响应性弹性蛋白肽。除了基因工程方法外,还开发了创新的化学修饰方法和改进的材料加工技术,以制造具有定制化学特征和纳米结构的先进丝绸材料。在此,本综述从不同角度总结了合成功能性丝基材料的各种方法。本综述还以丝素蛋白和丝素弹性蛋白样蛋白(SELPs)为例,重点介绍了天然丝和重组丝在组织再生、软机器人和生物传感器应用方面的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c10/9117649/39c5dc32df22/fchem-10-881028-g001.jpg

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