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首页> 外文期刊>Biomacromolecules >Recombinant Silk-Elastinlike Protein Polymer Displays Elasticity Comparable to Elastin
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Recombinant Silk-Elastinlike Protein Polymer Displays Elasticity Comparable to Elastin

机译:重组丝弹性蛋白蛋白聚合物显示出与弹性蛋白相当的弹性

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摘要

We evaluated the mechanical properties of the genetically engineered, recombinant silk-elastinlike protein copolymer, SELP-47K. In tensile stress-strain analysis, methanol-treated non-cross-linked SELP-47K films exceeded the properties of native aortic elastin, attaining an ultimate tensile strength of 2.5 ± 0.4 MPa, an elastic modulus of 1.7 ± 0.4 MPa, an extensibility of 190 ± 60%, and a resilience of 86 ± 4% after 10 cycles of mechanical preconditioning. Stress-relaxation and creep analysis showed that films substantially maintained their elastic properties under sustained deformation. Chemical cross-linking of SELP-47K films doubled the elastic modulus and ultimate tensile strength and enhanced the extensibility and resilience. The underlying conformational and microstructural features of the films were examined. Raman spectroscopy revealed that the silklike blocks of SELP-47K existed in antiparallel β-sheet crystals in the films, likely responsible for the robust physical crosslinks. Scanning electron microscopy (SEM) revealed that the various processing treatments and the mechanical deformation of the films induced changes in their surface microstructure consistent with the coagulation and alignment of polymer chains. These results demonstrate that films with excellent elasticity, comparable to native aortic elastin, are obtainable from SELP-47K, a protein copolymer combining both silk- and elastin-derived sequences in a single polymer chain.
机译:我们评估了基因工程的重组丝绸-弹性蛋白蛋白共聚物SELP-47K的机械性能。在拉伸应力应变分析中,甲醇处理的非交联SELP-47K薄膜超过了天然主动脉弹性蛋白的特性,获得了2.5±0.4 MPa的极限拉伸强度,1.7±0.4 MPa的弹性模量,可扩展性为190±60%,在经过10次机械预处理后的弹性为86±4%。应力松弛和蠕变分析表明,薄膜在持续变形下基本保持了弹性。 SELP-47K薄膜的化学交联使弹性模量和极限拉伸强度增加了一倍,并增强了可延展性和回弹性。检查了膜的基本构象和微观结构特征。拉曼光谱表明,SELP-47K的丝状嵌段存在于薄膜的反平行β片状晶体中,可能与牢固的物理交联有关。扫描电子显微镜(SEM)显示,薄膜的各种加工处理和机械变形引起其表面微观结构的变化,与聚合物链的凝结和排列一致。这些结果表明,可从SELP-47K获得具有与天然主动脉弹性蛋白相当的出色弹性的薄膜,SELP-47K是在单个聚合物链中结合了丝绸和弹性蛋白衍生序列的蛋白质共聚物。

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