Viscoelastic Behavior of a Single Collagen Molecule

  • Yoon, Young June
  • Cho, Kang-Hee
  • Han, Seog-Young
Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

Collagen represents the most abundant protein in the human body and plays an important role in connective tissues. Here, molecular dynamics simulation was performed to assess tension of a single collagen molecule, and stress-strain curves were obtained. In total, two regions (termed regions I and II) in the curve were displayed In region I, as the pulling velocity increased from 0.5 angstrom/ps to 5 angstrom/ps, the effective elastic modulus in creased from 18.613 GPa to 27.632 GPa when water surrounded a single collagen molecule and increased from 15.308 GPa to 17.665 GPa when no water was involved Conversely, in region II, effective modulus did not significantly change in response to changes in pulling velocity for both scenarios. We concluded that the viscoelastic behavior observed in region I corresponded to the uncurling of the collagen triple-helix. Water molecules likely play an important role in this viscoelastic behavior.

키워드

Molecular dynamicsCollagenStress-strain curveViscoelasticElasticX-RAY-DIFFRACTIONMECHANICAL-PROPERTIESYOUNGS MODULUSMODELELASTICITYFIBRILSTENSILECREEP
제목
Viscoelastic Behavior of a Single Collagen Molecule
저자
Yoon, Young JuneCho, Kang-HeeHan, Seog-Young
DOI
10.1007/s12541-014-0400-3
발행일
2014-04
유형
Article
저널명
International Journal of Precision Engineering and Manufacturing
15
4
페이지
783 ~ 786