Biomaterial surface properties, via introduction of specific signal biomolecules can influence cell adhesion and differentiation processes. Inspired by the monosaccharide motifs found in collagen glycosylation patterns, galactose being one of the most commonly found saccharidic residues, collagen matrices were modified in order to expose galactose residues to cells. The interaction of chemically neoglycosylated matrices was evaluated with osteosarcoma-derived cell line MG63.

Russo, L., Sgambato, A., Giannoni, P., Quarto, R., Vesentini, S., Gautieri, A., et al. (2014). Response of osteoblast-like MG63 on neoglycosylated collagen matrices. MEDCHEMCOMM, 5(8), 1208-1212 [10.1039/c4md00056k].

Response of osteoblast-like MG63 on neoglycosylated collagen matrices

RUSSO, LAURA;SGAMBATO, ANTONELLA;CIPOLLA, LAURA FRANCESCA
2014

Abstract

Biomaterial surface properties, via introduction of specific signal biomolecules can influence cell adhesion and differentiation processes. Inspired by the monosaccharide motifs found in collagen glycosylation patterns, galactose being one of the most commonly found saccharidic residues, collagen matrices were modified in order to expose galactose residues to cells. The interaction of chemically neoglycosylated matrices was evaluated with osteosarcoma-derived cell line MG63.
Articolo in rivista - Articolo scientifico
biomaterials, collagen, carbohydrates, osteosarcoma-derived cell lines, regenerative medicine
English
2014
5
8
1208
1212
none
Russo, L., Sgambato, A., Giannoni, P., Quarto, R., Vesentini, S., Gautieri, A., et al. (2014). Response of osteoblast-like MG63 on neoglycosylated collagen matrices. MEDCHEMCOMM, 5(8), 1208-1212 [10.1039/c4md00056k].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/51845
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