The effect of glycation on arterial microstructure and mechanical response

J Biomed Mater Res A. 2014 Aug;102(8):2565-72. doi: 10.1002/jbm.a.34927. Epub 2013 Sep 2.

Abstract

Like engineered materials, an artery's biomechanical behavior and function depend on its microstructure. Glycation is associated with both normal aging and diabetes and has been shown to increase arterial stiffness. In this study we examined the direct effect of glycation on the mechanical response of intact arteries and on the mechanical response and structure of elastin isolated from the arteries. Samples of intact arteries and isolated elastin were prepared from porcine aortas and glycated. The mechanical response of all samples was completed using a uniaxial material test system. Glycation levels were measured using ELISA. A confocal microscope was used to image differences in the structure of the glycated and untreated elastin fibers. We found that, under the conditions used in this study, glycation led to decreased stiffness of elastin isolated from arteries, which was associated with a thinning of elastin fibers as imaged by confocal microscopy. We observed no effect of glycation on collagen fibers under our treatment conditions. These results suggest that glycation leads to weakening of the elastin component of arteries that could contribute to vascular defects seen in diabetes and aging. Prevention of glycation reactions may be an important consideration for vascular health later in life.

Keywords: arteries; confocal microscope; elastin; glycation; mechanical response.

Publication types

  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Animals
  • Aorta, Thoracic
  • Arteries / anatomy & histology*
  • Arteries / physiology*
  • Biomechanical Phenomena
  • Dogs
  • Elastin / isolation & purification
  • Glycosylation
  • In Vitro Techniques
  • Microscopy, Confocal
  • Stress, Mechanical
  • Sus scrofa
  • Vascular Stiffness

Substances

  • Elastin