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Effects of different post-spin stretching conditions on the mechanical properties of synthetic spider silk fibers

机译:纺丝后不同拉伸条件对合成蜘蛛丝纤维力学性能的影响

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摘要

Spider silk is a biomaterial with impressive mechanical properties, resulting in various potential applications. Recent research has focused on producing synthetic spider silk fibers with the same mechanical properties as the native fibers. For this study, three proteins based on the Argiope aurantia Major ampullate Spidroin 2 consensus repeat sequence were expressed, purified and spun into fibers. A number of post-spin draw conditions were tested to determine the effect of each condition on the mechanical properties of the fiber. In all cases, post-spin stretching improved the mechanical properties of the fibers. Aqueous isopropanol was the most effective solution for increasing extensibility, while other solutions worked best for each fiber type for increasing tensile strength. The strain values of the stretched fibers correlated with the length of the proline-rich protein sequence. Structural analysis, including X-ray diffraction and Raman spectroscopy, showed surprisingly little change in the initial as-spun fibers compared with the post-spin stretched fibers.
机译:蜘蛛丝是一种具有令人印象深刻的机械性能的生物材料,具有多种潜在的应用前景。最近的研究集中在生产具有与天然纤维相同的机械性能的合成蜘蛛丝纤维。对于本研究,表达,纯化和纺丝了三种基于Argiope aurantia Major ampullate Spidroin 2共有重复序列的蛋白质。测试了许多纺后拉伸条件,以确定每种条件对纤维机械性能的影响。在所有情况下,纺丝后拉伸均改善了纤维的机械性能。异丙醇水溶液是提高延展性的最有效解决方案,而其他解决方案对于每种纤维类型均能最有效地提高拉伸强度。拉伸纤维的应变值与富含脯氨酸的蛋白质序列的长度相关。包括X射线衍射和拉曼光谱在内的结构分析表明,与纺后拉伸纤维相比,初始初纺纤维几乎没有变化。

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