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Controlled supercontraction tailors tne tensile behaviour of spider silk

机译:受控超收缩量身定制蜘蛛丝的拉伸性能

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摘要

The interest in the production of fibres that mimic the behaviour of natural silks has been boosted by the first successful attempts of spinning fibres based on spider drag line silk proteins. However, both the processing of biomimetic silk fibres and the basic studies on silk are hampered by the large variability of the fibre properties. Here we show that the tensile behaviour of spider silk can be predictably and reproducibly tailored by controlling the supercontraction effect, a large shrinkage of the longitudinal dimension of the fibre if unrestrained by its ends and immersed in water. This procedure allows to reproduce the tensile behviour of natural drag line fibres and offers the possibility of obtaining silk fibres with predictable tailored properties in large quantities for experimental use. These results can be interpreted in the frame of the molecular model of drag line silk, as the result of re-orientation of the protein chains, leading to an explanation for the observed variability of natural drag line fibres.
机译:通过模拟成功的基于蜘蛛牵丝蚕丝蛋白的纤维,首次成功尝试提高了对模仿天然蚕丝性能的纤维生产的兴趣。但是,仿生蚕丝纤维的加工和蚕丝的基础研究都受到纤维性能变化的限制。在这里,我们表明,蜘蛛丝的拉伸行为可以通过控制超收缩效果来预测和再现地调整,如果不限制其端部并将其浸入水中,则可以控制其纵向尺寸的大收缩。该方法允许再现天然拉丝纤维的拉伸性能,并提供了获得大量具有可预测的定制性能的丝纤维以供实验使用的可能性。这些结果可以在拉丝蚕丝的分子模型框架中解释,这是蛋白质链重新定向的结果,从而可以解释所观察到的天然拉丝纤维的变异性。

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