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Identification of Wet-Spinning and Post-Spin Stretching Methods Amenable to Recombinant Spider Aciniform Silk

机译:适于蜘蛛蛛形丝的湿纺和纺后拉伸方法的鉴定

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摘要

Spider silks are outstanding biomaterials with mechanical properties that outperform synthetic materials. Of the six fibrillar spider silks, aciniform (or wrapping) silk is the toughest through a unique combination of strength and extensibility. In this study, a wet-spinning method for recombinant Argiope trifasciata aciniform spidroin (AcSp1) is introduced. Recombinant AcSp1 comprising three 200 amino acid repeat units was solubilized in a 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP)/water mixture, forming a viscous α-helix-enriched spinning dope, and wet-spun into an ethanol/water coagulation bath allowing continuous fiber production. Post-spin stretching of the resulting wet-spun fibers in water significantly improved fiber strength, enriched β-sheet conformation without complete α-helix depletion, and enhanced birefringence. These methods allow reproducible aciniform silk fiber formation, albeit with lower extensibility than native silk, requiring conditions and methods distinct from those previously reported for other silk proteins. This provides an essential starting point for tailoring wet-spinning of aciniform silk to achieve desired properties.
机译:蜘蛛丝是出色的生物材料,其机械性能优于合成材料。在六种原纤维蜘蛛丝中,Aciniform(或包裹)丝通过强度和延展性的独特结合而最坚韧。在这项研究中,湿纺法介绍了重组Argiope trifasciata aciniform spidroin(AcSp1)。将包含三个200个氨基酸重复单元的重组AcSp1溶解在1,1,1,3,3,3-六氟-2-丙醇(HFIP)/水混合物中,形成粘稠的α-螺旋富集的纺丝原液,然后湿润-纺入乙醇/水凝固浴中,可连续生产纤维。在水中对所得湿纺纤维进行纺丝后拉伸,可显着提高纤维强度,丰富的β-片层构型,而不会完全消除α-螺旋,并增强双折射。这些方法尽管可扩展性比天然丝低,但仍可形成可重复的腺丝状丝纤维,需要的条件和方法与先前报道的其他丝蛋白不同。这为定制纤维状纺丝状纺丝以获得所需性能提供了重要的起点。

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