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PMID: 15536643 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Adhesive and mechanical properties of hydrogels influence neurite extension.

Journal of biomedical materials research. Part A ·Vol. 72 ·No. 1 ·2005-01-01 ·Pages 91-7

Gunn JW, Turner SD, Mann BK

Abstract

Photopolymerizable polyethylene glycol (PEG) hydrogels conjugated with bioactive ligands were examined for their use as scaffolds in peripheral nerve regeneration applications. The bioactivity and mechanical properties of PEG hydrogels can be tailored through the integration of bioactive factors (adhesion ligands, proteolytic sites, growth factors) and the alteration of PEG concentrations, respectively. For peripheral nerve regeneration, it will be important to determine the type and concentration of the bioactive molecules required to improve neurite extension. In this study, cell adhesion ligands (RGDS, IKVAV, and YIGSR) were covalently attached to PEG hydrogels. Both the type and concentration of cell adhesion ligand used affected neurite extension. Extension from PC12 cells was greater on hydrogels with RGDS incorporated than IKVAV, and the optimal concentration for each ligand was different. Cells adhered to but did not extend neurites on hydrogels with YIGSR. Cells did not adhere to hydrogels containing RGES. Furthermore, different combinations of these ligands affected neurite extension to different degrees. The mechanical properties of the hydrogels also significantly affected neurite extension. PC12 cells grown on more flexible hydrogels exhibited the greatest degree of neurite extension. PEG hydrogels have thus been developed with varying biochemical and mechanical properties that may enhance nerve regeneration.

MeSH Terms
Adhesiveness Animals Cell Adhesion Molecules/pharmacology Dose-Response Relationship, Drug Hydrogels/chemistry,pharmacology Mechanics Nerve Regeneration/drug effects Neurites/drug effects PC12 Cells Peptide Fragments/pharmacology Peripheral Nerves/physiology Polyethylene Glycols Rats
Chemicals
Cell Adhesion Molecules Hydrogels Peptide Fragments Polyethylene Glycols
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Gunn Jonathan W
Keck Graduate Institute, 535 Watson Drive, Claremont, California 91711, USA.
Turner Suzanne D
Mann Brenda K
Article Info
Journal
Journal of biomedical materials research. Part A
Abbr.
J Biomed Mater Res A
ISSN
1549-3296
Published
2005-01-01
Pages
91-7
Language
English
Region
United States
NLM ID
101234237
Subset
IM
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