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  3. Comparative stability studies of poly(2-methyl-2-oxazoline) and poly(ethylene glycol) brush coatings
 

Comparative stability studies of poly(2-methyl-2-oxazoline) and poly(ethylene glycol) brush coatings

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Publisher DOI
10.1007/s13758-011-0001-y
PubMed ID
22589044
Description
Non-fouling surfaces that resist non-specific adsorption of proteins, bacteria, and higher organisms are of particular interest in diverse applications ranging from marine coatings to diagnostic devices and biomedical implants. Poly(ethylene glycol) (PEG) is the most frequently used polymer to impart surfaces with such non-fouling properties. Nevertheless, limitations in PEG stability have stimulated research on alternative polymers that are potentially more stable than PEG. Among them, we previously investigated poly(2-methyl-2-oxazoline) (PMOXA), a peptidomimetic polymer, and found that PMOXA shows excellent anti-fouling properties. Here, we compare the stability of films self-assembled from graft copolymers exposing a dense brush layer of PEG and PMOXA side chains, respectively, in physiological and oxidative media. Before media exposure both film types prevented the adsorption of full serum proteins to below the detection limit of optical waveguide in situ measurements. Before and after media exposure for up to 2 weeks, the total film thickness, chemical composition, and total adsorbed mass of the films were quantified using variable angle spectroscopic ellipsometry (VASE), X-ray photoelectron spectroscopy (XPS), and optical waveguide lightmode spectroscopy (OWLS), respectively. We found (i) that PMOXA graft copolymer films were significantly more stable than PEG graft copolymer films and kept their protein-repellent properties under all investigated conditions and (ii) that film degradation was due to side chain degradation rather than due to copolymer desorption.
Date of Publication
2012
Publication Type
Article
Language(s)
en
Contributor(s)
Pidhatika, Bidhari
Rodenstein, Mathias
Chen, Yin
Rakhmatullina, Ekaterina
Zahnmedizinische Kliniken, Klinik für Zahnerhaltung
Mühlebach, Andreas
Acikgöz, Canet
Textor, Marcus
Konradi, Rupert
Additional Credits
Zahnmedizinische Kliniken, Klinik für Zahnerhaltung
Series
Biointerphases
Publisher
American Vacuum Society
ISSN
1934-8630
Access(Rights)
metadata.only
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