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  •   University of Thessaly Institutional Repository
  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ.
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  •   University of Thessaly Institutional Repository
  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ.
  • View Item
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BIOFUNCTIONALIZATION OF PET/SiO2 SURFACES FOR SINGLE MOLECULE EXPERIMENTS AND MEDICAL APPLICATIONS

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Author
Katranidis, A.; Melachroinos, A.; Karagiannidis, P. G.; Lousinian, S.; Papadopoulos, G.; Logothetidis, S.; Choli-Papadopoulou, T.
Date
2011
DOI
10.1142/s1793292011002573
Keyword
GFP
biofunctionalization
single molecule
PET
tethering
GREEN FLUORESCENT PROTEIN
OPTICAL-PROPERTIES
VASCULAR GRAFTS
HERNIA
REPAIR
THIN-FILMS
POLYESTER
STABILITY
MESH
Nanoscience & Nanotechnology
Materials Science, Multidisciplinary
Physics, Applied
Metadata display
Abstract
PET/SiO2 layers were chemically modified to maintain immobilization of functional single molecules. GFP molecules provide an ideal system due to their stability and intrinsic fluorescence. GFP in vivo biotinylated within its NH2-terminal region and attached on the substrate via the biotin-streptavidin bond was further investigated with confocal microscopy, atomic force microscopy (AFM) and spectroscopic ellipsometry (SE). AFM revealed monolayered donut-like structures representing assemblies of biotin-streptavidin-biotin-GFP immobilized onto PET/SiO2 surfaces via mPEG. In particular, regions with an approximate height of 12 nm, which approaches the molecular dimensions of the above complex given by molecular modeling, could be detected. The dimensions of the donut-like structures suggest a close-to-each-other positioning of the GFP molecules - which, however, retain their functionality, as evidenced by confocal microscopy.
URI
http://hdl.handle.net/11615/29214
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  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]
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