| Literature DB >> 22956465 |
Jana Sommerfeld1, Jessica Richter, Raphael Niepelt, Stefanie Kosan, Thomas F Keller, Klaus D Jandt, Carsten Ronning.
Abstract
We synthesized nano-scaled periodic ripple patterns on silicon and titanium dioxide (TiO(2)) surfaces by xenon ion irradiation, and performed adsorption experiments with human plasma fibrinogen (HPF) on such surfaces as a function of the ripple wavelength. Atomic force microscopy showed the adsorption of HPF in mostly globular conformation on crystalline and amorphous flat Si surfaces as well as on nano-structured Si with long ripple wavelengths. For short ripple wavelengths the proteins seem to adsorb in a stretched formation and align across or along the ripples. In contrast to that, the proteins adsorb in a globular assembly on flat and long-wavelength rippled TiO(2), but no adsorbed proteins could be observed on TiO(2) with short ripple wavelengths due to a decrease of the adsorption energy caused by surface curvature. Consequently, the adsorption behavior of HPF can be tuned on biomedically interesting materials by introducing a nano-sized morphology while not modifying the stoichiometry/chemistry.Entities:
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Year: 2012 PMID: 22956465 DOI: 10.1007/s13758-012-0055-5
Source DB: PubMed Journal: Biointerphases ISSN: 1559-4106 Impact factor: 2.456