Abstract
Novel polymeric cell adhesion inhibitors were developed in which the selectin tetrasaccharide sialyl-LewisX(SLeX) is multivalently presented on a biocompatible poly(2-hydroxypropyl)methacrylamide (PHPMA) backbone either alone (P1) or in combination with O-sulfated tyramine side chains (P2). For comparison, corresponding polymeric glycomimetics were prepared in which the crucial “single carbohydrate” substructures fucose, galactose, and sialic acid side chains were randomly linked to the PHPMA backbone (P3 or P4 (O-sulfated tyramine)). All polymers have an identical degree of polymerization, as they are derived from the same precursor polymer. Binding assays to selectins, to activated endothelial cells, and to macrophages show that polyHPMA with SLeXis an excellent binder to E-, L-, and P-selectins. However, mimetic P4 can also achieve close to comparable binding affinities in in vitro measurements and surprisingly, it also significantly inhibits the migration of macrophages; this provides new perspectives for the therapy of severe inflammatory diseases.
| Original language | English |
|---|---|
| Journal | Angewandte Chemie International Edition |
| Volume | 56 |
| Issue number | 5 |
| Pages (from-to) | 1416-1421 |
| ISSN | 1433-7851 |
| DOIs |
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| Publication status | Published - 24. Jan 2017 |
| Externally published | Yes |
Funding
Support by the German Research Foundation (SFB 1066) and the European Research Council (ERC-StG-309495) is gratefully acknowledged. We thank Martin Scherer for resynthesizing S-PHPMA and Regina Holm for help with preparing the manuscript.
Keywords
- glycopolymers
- nanomedicine
- PHPMA
- polymer–carbohydrate conjugates
- sialyl-Lewismimetics
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