4.0 Article

Persistence length of collagen molecules based on nonlocal viscoelastic model

期刊

JOURNAL OF BIOLOGICAL PHYSICS
卷 43, 期 4, 页码 525-534

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SPRINGER
DOI: 10.1007/s10867-017-9467-2

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Collagen molecule; Persistence length, nonlocal elasticity; Viscoelastic property

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Persistence length is one of the most interesting properties of a molecular chain, which is used to describe the stiffness of a molecule. The experimentally measured values of the persistence length of the collagen molecule are widely scattered from 14 to 180 nm. Therefore, an alternative approach is highly desirable to predict the persistence length of a molecule and also to explain the experimental results. In this paper, a nonlocal viscoelastic model is developed to obtain the persistence length of the collagen molecules in solvent. A new explicit formula is proposed for the persistence length of the molecule with the consideration of the small-scale effect, viscoelastic properties of the molecule, loading frequency, and viscosity of the solvent. The presented model indicates that there exists a range of molecule lengths in which the persistence length strongly depends on the frequency and spatial mode of applied loads, small-scale effect, and viscoelastic properties of the collagen.

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