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通过在简单的湿法纺丝过程中加入二氧化钛和甲醛交联,得到坚韧的合成蜘蛛丝纤维。

Tough synthetic spider-silk fibers obtained by titanium dioxide incorporation and formaldehyde cross-linking in a simple wet-spinning process.

机构信息

Institute of Biological Sciences and Biotechnology, Donghua University, Shanghai 201620, China.

Institute of Biological Sciences and Biotechnology, Donghua University, Shanghai 201620, China.

出版信息

Biochimie. 2020 Aug;175:77-84. doi: 10.1016/j.biochi.2020.05.003. Epub 2020 May 14.

Abstract

Due to its unique mechanical properties, spider silk shows great promise as a strong super-thin fiber in many fields. Although progress has been made in the field of synthesizing spider-silk fiber from recombinant spidroin (spider silk protein) in the last few decades, methods to obtain synthetic spider-silk fibers as tough as natural silk from small-sized recombinant protein with a simple spinning process have eluded scientists. In this paper, a recombinant spidroin (MW: 93.4 kDa) was used to spin tough synthetic spider-silk fibers with a simple wet-spinning process. Titanium oxide incorporation and formaldehyde cross-linking were used to improve the mechanical properties of synthetic spider-silk fibers. Fibers treated with incorporation or/and cross-linking varied in microstructure, strength and extensibility while all exhibited enhanced strength and toughness. In particular, one fiber possessed a toughness of 249 ± 22 MJ/m. This paper presents a new method to successfully spin tough spider-silk fibers in a simple way.

摘要

由于其独特的机械性能,蛛丝在许多领域作为一种强韧的超薄纤维具有很大的应用前景。尽管在过去几十年中,人们在通过重组丝蛋白(蜘蛛丝蛋白)合成蛛丝纤维方面取得了进展,但科学家们仍未能找到一种简单的纺丝工艺,从小型重组蛋白中获得与天然丝一样坚韧的合成蛛丝纤维的方法。本文使用一种重组丝蛋白(MW:93.4 kDa),通过简单的湿法纺丝工艺纺制出强韧的合成蛛丝纤维。通过掺入二氧化钛和甲醛交联来改善合成蛛丝纤维的机械性能。经过掺入和/或交联处理的纤维在微观结构、强度和伸长率方面存在差异,但所有纤维的强度和韧性都得到了增强。特别是有一种纤维的韧性达到了 249±22 MJ/m。本文提出了一种新的方法,成功地以简单的方式纺制出强韧的蛛丝纤维。

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