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首页> 外文期刊>Biomacromolecules >Repeat-Proteins Films Exhibit Hierarchical Anisotropic Mechanical Properties
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Repeat-Proteins Films Exhibit Hierarchical Anisotropic Mechanical Properties

机译:重复蛋白膜表现出分层各向异性的机械性能

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摘要

Complex hierarchical structures provide beneficial structureproperty relationships that can be exploited for a variety of applications in engineering and biomedical fields. Here we report on molecular organization and resulting mechanical properties of self-assembled designed repeat-protein films. Wide-angle X-ray diffraction indicates the designed 18-repeat concensus tetratricopeptide repeat protein (CTPR18) orients normal to the casting surface, while small-angle measurements and electron microscopy show a through-plane transversely aligned laminar sheet-like morphology. Self-assembly is driven by the combination of CTPRs head-to-tail stacking and weak dipole-dipole interactions. We highlight the effect that this hierarchical structure has on the materials mechanical properties. We use nanoindentation and dynamic mechanical analysis to test the mechanical properties over multiple length scales, from the molecular level to the bulk. We find that morphology predictably affects the films mechanics from the nano- to the macroscale, with the axial modulus values ranging from 2 to 5 GPa. The predictable nature of the structure-property relationship of CTPR proteins and their assemblies proves them a promising platform for material engineering.
机译:复杂的层次结构提供了有益的结构属性关系,可将其用于工程和生物医学领域的各种应用程序。在这里我们报告分子结构和由此产生的自组装设计的重复蛋白膜的机械性能。广角X射线衍射表明设计的18重复一致的四三肽重复蛋白(CTPR18)的方向垂直于铸件表面,而小角度测量和电子显微镜显示出贯穿平面的横向排列的层状片状形态。自组装是由CTPR头尾堆叠和弱偶极-偶极相互作用共同驱动的。我们强调了这种分层结构对材料力学性能的影响。我们使用纳米压痕和动态力学分析来测试从分子水平到整体的多种长度尺度的机械性能。我们发现形态可预测地影响薄膜力学,从纳米到宏观,其轴向模量值范围为2至5 GPa。 CTPR蛋白及其组装结构之间的可预测性质证明了它们是材料工程的有前途的平台。

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