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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Phase Separation and Mechanical Properties of an Elastomeric Biomaterial from Spider Wrapping Silk and Elastin Block Copolymers
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Phase Separation and Mechanical Properties of an Elastomeric Biomaterial from Spider Wrapping Silk and Elastin Block Copolymers

机译:蜘蛛包裹丝和弹性蛋白嵌段共聚物的弹性生物材料的相分离和力学性能

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摘要

Elastin and silk spidroins are fibrous, structural proteins with elastomeric properties of extension and recoil. While elastin is highly extensible and has excellent recovery of elastic energy, silks are particularly strong and tough. This study describes the biophysical characterization of recombinant polypeptides designed by combining spider wrapping silk and elastin-like sequences as a strategy to rationally increase the strength of elastin-based materials while maintaining extensibility. We demonstrate a thermo-responsive phase separation and spontaneous colloid-like droplet formation from silk-elastin block copolymers, and from a 34 residue disordered region of Argiope trifasciata wrapping silk alone, and measure a comprehensive suite of tensile mechanical properties from cross-linked materials. Silk-elastin materials exhibited significantly increased strength, toughness, and stiffness compared to an elastin-only material, while retaining high failure strains and low energy loss upon recoil. These data demonstrate the mechanical tunability of protein polymer biomaterials through modular, chimeric recombination, and provide structural insights into mechanical design. (C) 2016 Wiley Periodicals, Inc.
机译:弹性蛋白和丝蜘蛛蛋白是纤维状的结构蛋白,具有延伸和反冲的弹性。弹性蛋白具有很高的延展性,并具有出色的弹性能恢复能力,而丝绸则特别坚韧。这项研究描述了重组多肽的生物物理表征,该重组多肽是通过结合蜘蛛包裹的丝和弹性蛋白样序列设计的,以合理地增加弹性蛋白基材料的强度并同时保持可扩展性的策略。我们展示了由真丝-弹性蛋白嵌段共聚物以及仅包裹真丝的Argiope trifasciata的34个残基无序区域形成的热响应相分离和自发胶体状液滴形成,并从交联材料测量了一套完整的拉伸机械性能。与仅弹性蛋白的材料相比,弹性蛋白材料的强度,韧性和刚度显着提高,同时保留了较高的破坏应变和后坐力时的低能量损失。这些数据证明了通过模块化,嵌合重组产生的蛋白质聚合物生物材料的机械可调性,并为机械设计提供了结构上的见识。 (C)2016威利期刊公司

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