Agarose gel stiffness determines rate of DRG neurite extension in 3D cultures.

Published

Journal Article

The optimization of scaffold mechanical properties for neurite extension is critical for neural tissue engineering. Agarose hydrogels can be used to stimulate and maintain three-dimensional neurite extension from primary sensory ganglia in vitro. The present study explores the structure-function relationship between dorsal root ganglion (DRG) neurite extension and agarose gel mechanical properties. A range of agarose gels of differing concentrations were generated and the corresponding rate of E9 DRG neurite extension was measured. Rate of neurite extension was inversely correlated to the mechanical stiffness of agarose gels in the range of 0.75-2.00% (wt/vol) gel concentrations. In addition, we postulate a physical model that predicts the rate of neurite extension in agarose gels, if gel stiffness is a known parameter. This model is based on Heidemann and Buxbaum's model of neurite extension. These results, if extended to scaffolds of other morphological and chemical features, would contribute significantly to the design criteria of three-dimensional scaffolds for neural tissue engineering.

Full Text

Duke Authors

Cited Authors

  • Balgude, AP; Yu, X; Szymanski, A; Bellamkonda, RV

Published Date

  • May 2001

Published In

Volume / Issue

  • 22 / 10

Start / End Page

  • 1077 - 1084

PubMed ID

  • 11352088

Pubmed Central ID

  • 11352088

Electronic International Standard Serial Number (EISSN)

  • 1878-5905

International Standard Serial Number (ISSN)

  • 0142-9612

Digital Object Identifier (DOI)

  • 10.1016/s0142-9612(00)00350-1

Language

  • eng