Cell adhesion peptides alter smooth muscle cell adhesion, proliferation, migration, and matrix protein synthesis on modified surfaces and in polymer scaffolds
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- 14 January 2002
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 60 (1) , 86-93
- https://doi.org/10.1002/jbm.10042
Abstract
The effects of cell adhesion peptides (RGDS, KQAGDV, VAPG) on vascular smooth muscle cells grown on modified surfaces and in tissue‐engineering scaffolds were examined. Cells were more strongly adhered to surfaces modified with adhesive ligands than to control surfaces (no ligand or a nonadhesive ligand). Cell migration was higher on surfaces with 0.2 nmol/cm2 of adhesive ligand than on control surfaces, but it was lower on surfaces with 2.0 nmol/cm2 of adhesive ligand than it was on control surfaces. Further, cell proliferation was lower on adhesive surfaces than it was on control surfaces, and it decreased as the ligand density increased. Similarly, in the peptide‐grafted hydrogel scaffolds, cell proliferation was lower in scaffolds containing the adhesive peptides than it was in control scaffolds. After 7 days of culture, more collagen per cell was produced in control scaffolds than in scaffolds containing adhesive peptides. In addition, collagen production decreased in the scaffolds as the ligand concentration increased. While modification of a surface or scaffold material with adhesive ligands initially increases cell attachment, it may be necessary to optimize cell adhesion simultaneously with proliferation, migration, and matrix production. © 2002 Wiley Periodicals, Inc., J Biomed Mater Res 60: 86–93, 2002Keywords
This publication has 19 references indexed in Scilit:
- Modification of surfaces with cell adhesion peptides alters extracellular matrix depositionBiomaterials, 1999
- The Effect of TGF-beta Delivered Through a Collagen Scaffold on Wound HealingJournal of Investigative Surgery, 1999
- Surfaces modified with covalently-immobilized adhesive peptides affect fibroblast population motilityBiomaterials, 1996
- Adhesion in cell migrationCurrent Opinion in Cell Biology, 1995
- Multifunctional poly(ethylene glycol) semi‐interpenetrating polymer networks as highly selective adhesive substrates for bioadhesive peptide graftingBiotechnology & Bioengineering, 1994
- Maximal migration of human smooth muscle cells on fibronectin and type IV collagen occurs at an intermediate attachment strengthThe Journal of cell biology, 1993
- Cell Function on Substrates Containing Immobilized Bioactive PeptidesMRS Proceedings, 1993
- Endothelial Cell-Selective Materials for Tissue Engineering in the Vascular Graft Via a New ReceptorNature Biotechnology, 1991
- Epidermal growth factor responsiveness in smooth muscle cells from hypertensive and normotensive rats.Hypertension, 1989