Biological evaluation of RGD peptidomimetics, designed for the covalent derivatization of cell culture substrata, as potential promoters of cellular adhesion

Citation
J. Marchand-brynaert et al., Biological evaluation of RGD peptidomimetics, designed for the covalent derivatization of cell culture substrata, as potential promoters of cellular adhesion, BIOMATERIAL, 20(19), 1999, pp. 1773-1782
Citations number
48
Categorie Soggetti
Multidisciplinary
Journal title
BIOMATERIALS
ISSN journal
01429612 → ACNP
Volume
20
Issue
19
Year of publication
1999
Pages
1773 - 1782
Database
ISI
SICI code
0142-9612(199910)20:19<1773:BEORPD>2.0.ZU;2-R
Abstract
Our aim was to replace the proteins and peptides, generally used for the bi ocompatibilization of polymer substrata, with synthetic molecules mimicking the RGD (Arg-Gly-Asp) active sequence. Based on the (L)-tyrosine template, RGD peptidomimetics were constructed; one molecule 3 was equipped with an anchorage arm that allowed its covalent grafting on a culture substratum ma de from poly(ethylene terephthalate) (PET) microporous membrane. The amount of fixed molecules was readily determined by XPS, using a fluorine tag inc orporated in the peptidomimetic structure. The binding of peptidomimetics 1 -3 to the vitronectin (VN) and fibronectin (FN) receptors could not be reve aled in a test of inhibition of MSC 80 cells adhesion, by the synthetic com pounds in solution placed in competition with the adhesive proteins (VN and FN) coating polystyrene plates. However, the cell-attachment activity of p eptidomimetic 3 was shown by culturing CaCo2 cells, in the absence of serum , on the PET substratum grafted with 3. The performance of this support was similar to that of PET grafted with the reference peptide RGDS (Arg-Gly-As p-Ser), and only reduced by half comparatively to the PET grafted with FN. (C) 1999 Elsevier Science Ltd. AII rights reserved.