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Efficient Synthesis of Heparinoid Bioconjugates for Tailoring FGF2 Activity at the Stem Cell-Matrix Interface.

Citation
Trieger, G. W., et al. “Efficient Synthesis Of Heparinoid Bioconjugates For Tailoring Fgf2 Activity At The Stem Cell-Matrix Interface.”. Bioconjugate Chemistry, pp. 833-840.
Center UCSD-UCLA
Author Greg W Trieger, Stephen Verespy, Philip L S M Gordts, Kamil Godula
Abstract

Heparan sulfate glycosaminoglycans (HS GAGs) attached to proteoglycans harbor high affinity binding sites for various growth factors (GFs) and direct their organization and activity across the cell-matrix interface. Here, we describe a mild and efficient method for generating HS-protein conjugates. The two-step process utilizes a "copper-free click" coupling between differentially sulfated heparinoids primed at their reducing end with an azide handle and a bovine serum albumin protein modified with complementary cyclooctyne functionality. When adsorbed on tissue culture substrates, the glycoconjugates served as extracellular matrix proteoglycan models with the ability to sequester FGF2 and influence mesenchymal stem cell proliferation based on the structure of their HS GAG component.

Year of Publication
2019
Journal
Bioconjugate chemistry
Volume
30
Issue
3
Number of Pages
833-840
Date Published
12/2019
ISSN Number
1520-4812
DOI
10.1021/acs.bioconjchem.8b00921
Alternate Journal
Bioconjug. Chem.
PMID
30668905
PMCID
PMC6860979
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