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淀粉样纤维的层次结构与纳米力学性能的相关性。

Correlation between the hierarchical structures and nanomechanical properties of amyloid fibrils.

机构信息

School of Public Health, Harvard University, Boston, MA 02115, United States of America.

出版信息

Nanotechnology. 2018 Jul 20;29(29):295701. doi: 10.1088/1361-6528/aabd8a. Epub 2018 Apr 12.

Abstract

Amyloid fibrils have recently been highlighted due to their excellent mechanical properties, which not only play a role in their biological functions but also imply their applications in biomimetic material design. Despite recent efforts to unveil how the excellent mechanical properties of amyloid fibrils originate, it has remained elusive how the anisotropic nanomechanical properties of hierarchically structured amyloid fibrils are determined. Here, we characterize the anisotropic nanomechanical properties of hierarchically structured amyloid fibrils using atomic force microscopy experiments and atomistic simulations. It is shown that the hierarchical structure of amyloid fibrils plays a crucial role in determining their radial elastic property but does not make any effect on their bending elastic property. This is attributed to the role of intermolecular force acting between the filaments (constituting the fibril) on the radial elastic modulus of amyloid fibrils. Our finding illustrates how the hierarchical structure of amyloid fibrils encodes their anisotropic nanomechanical properties. Our study provides key design principles of amyloid fibrils, which endow valuable insight into the underlying mechanisms of amyloid mechanics.

摘要

淀粉样纤维最近因其优异的机械性能而受到关注,这些性能不仅在它们的生物功能中发挥作用,而且还暗示了它们在仿生材料设计中的应用。尽管最近已经努力揭示了淀粉样纤维优异的机械性能是如何产生的,但淀粉样纤维的各向异性纳米力学性能是如何确定的仍然难以捉摸。在这里,我们使用原子力显微镜实验和原子模拟来表征具有层次结构的淀粉样纤维的各向异性纳米力学性能。结果表明,淀粉样纤维的层次结构对其径向弹性性能起着至关重要的作用,但对其弯曲弹性性能没有任何影响。这归因于在纤维(构成纤维)之间作用的分子间力对淀粉样纤维的径向弹性模量的作用。我们的发现说明了淀粉样纤维的层次结构如何对其各向异性纳米力学性能进行编码。我们的研究为淀粉样纤维提供了关键的设计原则,为淀粉样纤维力学的潜在机制提供了有价值的见解。

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