Department of Integrative Biology, University of Guelph, Ontario, Canada.
Bioinspir Biomim. 2010 Sep;5(3):035002. doi: 10.1088/1748-3182/5/3/035002. Epub 2010 Aug 20.
Textile manufacturing is one of the largest industries in the world, and synthetic fibres represent two-thirds of the global textile market. Synthetic fibres are manufactured from petroleum-based feedstocks, which are becoming increasingly expensive as demand for finite petroleum reserves continues to rise. For the last three decades, spider silks have been held up as a model that could inspire the production of protein fibres exhibiting high performance and ecological sustainability, but unfortunately, artificial spider silks have yet to fulfil this promise. Previous work on the biomechanics of protein fibres from the slime of hagfishes suggests that these fibres might be a superior biomimetic model to spider silks. Based on the fact that the proteins within these 'slime threads' adopt conformations that are similar to those in spider silks when they are stretched, we hypothesized that draw processing of slime threads should yield fibres that are comparable to spider dragline silk in their mechanical performance. Here we show that draw-processed slime threads are indeed exceptionally strong and tough. We also show that post-drawing steps such as annealing, dehydration and covalent cross-linking can dramatically improve the long-term dimensional stability of the threads. The data presented here suggest that hagfish slime threads are a model that should be pursued in the quest to produce fibres that are ecologically sustainable and economically viable.
纺织制造业是全球最大的产业之一,合成纤维占全球纺织市场的三分之二。合成纤维由石油基原料制成,随着对有限石油储备的需求持续增长,这些原料的价格越来越高。在过去的三十年中,蜘蛛丝一直被视为可以启发生产高性能和生态可持续性的蛋白质纤维的模型,但不幸的是,人造蜘蛛丝尚未实现这一承诺。以前对粘蛋白纤维的生物力学研究表明,这些纤维可能是比蜘蛛丝更好的仿生模型。基于这些“粘液线”中的蛋白质在拉伸时会采用类似于蜘蛛丝的构象这一事实,我们假设粘液线的拉伸处理应该会产生在机械性能上与蜘蛛拖丝相当的纤维。在这里,我们证明了拉伸处理的粘液线确实非常强韧。我们还表明,拉伸后的后处理步骤,如退火、脱水和共价交联,可以显著提高纤维的长期尺寸稳定性。这里呈现的数据表明,盲鳗粘液线是一个值得研究的模型,应该致力于生产具有生态可持续性和经济可行性的纤维。
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