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Experimental Methods for Characterizing the Secondary Structure and Thermal Properties of Silk Proteins

机译:用于表征丝蛋白二次结构和热性质的实验方法

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摘要

Silk proteins are biopolymers produced by spinning organisms that have been studied extensively for applications in materials engineering, regenerative medicine, and devices due to their high tensile strength and extensibility. This remarkable combination of mechanical properties arises from their unique semi-crystalline secondary structure and block copolymer features. The secondary structure of silks is highly sensitive to processing, and can be manipulated to achieve a wide array of material profiles. Studying the secondary structure of silks is therefore critical to understanding the relationship between structure and function, the strength and stability of silk-based materials, and the natural fiber synthesis process employed by spinning organisms. However, silks present unique challenges to structural characterization due to high-molecular-weight protein chains, repetitive sequences, and heterogeneity in intra- and interchain domain sizes. Here, experimental techniques used to study the secondary structure of silks, the information attainable from these techniques, and the limitations associated with them are reviewed. Ultimately, the appropriate utilization of a suite of techniques discussed here will enable detailed characterization of silk-based materials, from studying fundamental processing-structure-function relationships to developing commercially useful quality control assessments.
机译:丝蛋白是通过纺丝生物产生的生物聚合物,其由于它们的高抗拉强度和可伸缩性而被广泛地研究了材料工程,再生医学和装置中的应用。这种显着的机械性能组合由它们独特的半结晶二级结构和嵌段共聚物特征产生。丝丝的二级结构对处理非常敏感,并且可以被操纵以实现各种材料型材。因此,研究丝网的二级结构对于了解结构和功能,丝基材料的强度和稳定性和纺丝生物所采用的天然纤维合成方法是至关重要的。然而,由于高分子量蛋白链,重复序列和内部结构域尺寸的异质性,丝塞对结构表征具有独特的挑战。这里,综述了用于研究丝塞的二级结构的实验技术,这些技术可获得的信息,以及与它们相关的限制。最终,这里讨论的一套技术的适当利用将使丝绸基材料进行详细表征,从研究基础加工 - 结构功能关系,以发展商业上有用的质量控制评估。

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