| Literature DB >> 25275956 |
Ivan Usov1, Raffaele Mezzenga.
Abstract
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 structure-property relationships in the nanomechanics of amyloid systems, such as in the closure of helical ribbons into nanotubes.Keywords: amyloid fibrils; nanomechanics; polymorphism
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Year: 2014 PMID: 25275956 DOI: 10.1021/nn503530a
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881