Effect of Polymer Brush Architecture on Antibiofouling Properties

Polymer brushes show great promise in next-generation antibiofouling surfaces. Here, we have studied the influence of polymer brush architecture on protein resistance. By carefully optimizing reaction conditions, we were able to polymerize oligoglycerol-based brushes with sterically demanding linear...

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Veröffentlicht in:Biomacromolecules 2011-11, Vol.12 (11), p.4169-4172
Hauptverfasser: Gunkel, Gesine, Weinhart, Marie, Becherer, Tobias, Haag, Rainer, Huck, Wilhelm T. S.
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Sprache:eng
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Zusammenfassung:Polymer brushes show great promise in next-generation antibiofouling surfaces. Here, we have studied the influence of polymer brush architecture on protein resistance. By carefully optimizing reaction conditions, we were able to polymerize oligoglycerol-based brushes with sterically demanding linear or dendronized side chains on gold surfaces. Protein adsorption from serum and plasma was analyzed by surface plasmon resonance. Our findings reveal a pronounced dependence of biofouling on brush architecture. Bulky yet flexible side chains as in dendronized brushes provide an ideal environment to repel proteinpossibly through formation of a hydration layer, which can be further enhanced by presenting free hydroxyl groups on the polymer brushes. A deeper understanding of how brush architecture influences protein resistance will ultimately enable fabrication of surface coatings tailored to specific requirements in biomedical applications.
ISSN:1525-7797
1526-4602
DOI:10.1021/bm200943m