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Nanostructured gold deposited in gelatin template applied for electrochemical assay of glucose in serum

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    0464713 - ÚIACH 2017 RIV GB eng J - Článek v odborném periodiku
    Juřík, T. - Podešva, Pavel - Farka, Z. - Kovář, D. - Skládal, P. - Foret, František
    Nanostructured gold deposited in gelatin template applied for electrochemical assay of glucose in serum.
    Electrochimica acta. Roč. 188, JAN (2016), s. 277-285. ISSN 0013-4686. E-ISSN 1873-3859
    Grant CEP: GA ČR(CZ) GA15-15479S
    Institucionální podpora: RVO:68081715
    Klíčová slova: gold nanostructures * gelatin template * glucose electrooxidation * blood analysis * non-enzymatic sensor
    Kód oboru RIV: CB - Analytická chemie, separace
    Impakt faktor: 4.798, rok: 2016

    Gelatin-templated gold nanostructures were fabricated in order to improve the sensitivity of nonenzymatic determination of glucose. The three-dimensional cavities were created by crosslinking of gelatin layer on the electrode and the specific saw tooth-like morphology of surface was formed by electrodeposition of gold through the cavities. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) were used for the investigation of nanostructure growth and characterization of prepared surfaces. Glucose was detected by a direct electrochemical oxidation during cyclic voltammetry in alkaline solution with excellent sensitivity of 1165 mA mM 1cm 2, wide linear range from 32 mM to 10 mM and limit of detection (LOD) of 90 mM. During amperometric measurements LOD of 1.5 mM was achieved. The sensor was able to detect real concentrations of glucose in deproteinized human serum with negligible interference of oxidizable blood components. Great correlation with results obtained from reference methods (commercial glucometer and standard kit for photometric glucose detection) was demonstrated; the determination of glucose in serum was performed with relative standard deviation of 4%. The sensor exhibits a strong potential as a rapid and sensitive non-enzymatic approach in future applications for clinical analyses.
    Trvalý link: http://hdl.handle.net/11104/0263499

     
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