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Attenuated total reflection fourier transform infrared spectroscopy towards disclosing mechanism of bacterial adhesion on thermally stabilized titanium nano-interfaces
Published in Springer New York LLC
2016
PMID: 27412653
Volume: 27
   
Issue: 8
Abstract
Titanium is widely used as medical implant material and as condenser material in the nuclear industry where its integrity is questioned due to its susceptibility to bacterial adhesion. A systematic investigation on the influence of thermally (50–800 °C) stabilized titanium (TS-Ti) nano oxide towards bacterial adhesion was carried out. The results showed that below 350 °C significant bacterio-phobicity was observed, while above 500 °C significant affinity towards bacterial cells was recorded. Conventional characterization tools such as HR-TEM and XRD did not provide much insight on the changes occurring on the oxide film with heat treatment, however, attenuated total reflection fourier transform infrared spectroscopy (ATR-FTIR) of the surface showed significant changes in the spectral pattern as a function of increasing heat treatment. It was observed that elevated OH, N–H and C=O groups and rutile titania on the TS-Ti oxide films led to higher affinity for bacterial adhesion. On the other hand low temperature TS-Ti nanooxide films (<350 °C) showed high C–H groups and decreased OH groups on their surface, which possibly contributed towards their bacterio-phobicity. The TS-Ti nanooxide film grown at 50 °C was observed to be the most efficient anti-bacterial adhesion interface, while the 800 °C interface was the one showing highest affinity towards bacterial adhesion. This study confirms the successful application of ATR-FTIR technique for nano-oxide film characterization and towards understanding the variations in bacterial interaction of such nano interfaces. © 2016, Springer Science+Business Media New York.
About the journal
JournalData powered by TypesetJournal of Materials Science: Materials in Medicine
PublisherData powered by TypesetSpringer New York LLC
ISSN09574530
Open AccessNo
Concepts (71)
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    Adhesion
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    Characterization
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    Electric breakdown
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    Electromagnetic wave reflection
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    Heat treatment
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    Interfaces (materials)
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    Nuclear industry
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    Oxide films
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    Oxide minerals
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    Supersaturation
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    Temperature
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    Titanium
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    Titanium oxides
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    ATTENUATED TOTAL REFLECTION FOURIER TRANSFORM INFRARED SPECTROSCOPY
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    Bacterial adhesion
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    BACTERIAL INTERACTIONS
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    Characterization tools
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    Low temperatures
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    Medical implants
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    NANO- INTERFACES
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    SPECTRAL PATTERNS
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    Fourier transform infrared spectroscopy
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    TITANIUM DIOXIDE NANOPARTICLE
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    Biomaterial
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    Metal nanoparticle
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    Nanomaterial
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    Oxide
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    Titanium dioxide
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    Article
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    ATTENUATED TOTAL REFLECTION FOURIER TRANSFORM INFRARED SPECTROSCOPY
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    Bacterial cell
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    Bacterial growth
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    Bacterium adherence
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    Binding affinity
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    Contact angle
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    Controlled study
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    Covalent bond
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    Dissolution
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    Escherichia coli
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    High temperature
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    Hydrogen bond
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    Hydrophilicity
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    Hydrophobicity
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    Infrared spectroscopy
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    Low temperature
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    Nonhuman
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    Oxidation
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    Particle size
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    Priority journal
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    Staphylococcus aureus
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    Thermostability
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    Transmission electron microscopy
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    Atomic force microscopy
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    Chemistry
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    Drug effects
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    Fluorescence microscopy
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    Heat
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    Materials testing
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    Procedures
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    Surface property
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    X ray diffraction
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    Biocompatible materials
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    Hot temperature
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    Metal nanoparticles
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    Microscopy, atomic force
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    Microscopy, fluorescence
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    Nanostructures
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    Oxides
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    Spectroscopy, fourier transform infrared
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    Surface properties
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    X-ray diffraction