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Correlation between Nanomechanics and Polymorphic Conformations in Amyloid Fibrils

机译:淀粉样原纤维中纳米力学与多态构象的相关性

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摘要

Amyloid fibrils occur in diverse morphologies, but how polymorphism affects the resulting mechanical properties is still not fully appreciated. Using formalisms from the theory of elasticity, we propose an original way of averaging the second area moment of inertia for non-axisymmetric fibrils, which constitutes the great majority of amyloid fibrils. By following this approach, we derive theoretical expressions for the bending properties of the most common polymorphic forms of amyloid fibrils (twisted ribbons, helical ribbons, and nanotubes), and we benchmark the predictions to experimental cases. These results not only allow an accurate estimation of the amyloid fibrils elastic moduli but also bring insight into the structureproperty relationships in the nanomechanics of amyloid systems, such as in the closure of helical ribbons into nanotubes.
机译:淀粉样蛋白原纤维以多种形态出现,但是多态性如何影响所得的机械性能仍未被完全理解。使用来自弹性理论的形式主义,我们提出了一种平均的方法,用于平均非轴对称原纤维的第二区域惯性矩,它构成了淀粉样原纤维的绝大部分。通过采用这种方法,我们得出了淀粉样原纤维最常见的多晶型形式(扭曲带,螺旋带和纳米管)的弯曲特性的理论表达式,并将预测结果与实验案例进行了对比。这些结果不仅允许准确估计淀粉样蛋白原纤维的弹性模量,而且还使人们了解淀粉样蛋白系统的纳米力学中的结构性质关系,例如将螺旋状带封闭成纳米管。

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