• Title of article

    DNA hybridization and phosphinothricin acetyltransferase gene sequence detection based on zirconia/nanogold film modified electrode

  • Author/Authors

    Wei Zhang، نويسنده , , Tao Yang، نويسنده , , Chen Jiang، نويسنده , , Hong Jiang and Kui Jiao، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    7
  • From page
    4750
  • To page
    4756
  • Abstract
    This study reports a novel electrochemical DNA biosensor based on zirconia (ZrO2) and gold nanoparticles (NG) film modified glassy carbon electrode (GCE). NG was electrodeposited onto the glassy carbon electrode at 1.5 V, and then zirconia thin film on the NG/GCE was fabricated by cyclic voltammetric method (CV) in an aqueous electrolyte of ZrOCl2 and KCl at a scan rate of 20 mV/s. DNA probes were attached onto the ZrO2/NG/GCE due to the strong binding of the phosphate group of DNA with the zirconia film and the excellent biocompatibility of nanogold with DNA. CV and electrochemical impedance spectroscopy (EIS) were used to characterize the modification of the electrode and the probe DNA immobilization. The electrochemical response of the DNA hybridization was measured by differential pulse voltammetry (DPV) using methylene blue (MB) as the electroactive indicator. After the hybridization of DNA probe (ssDNA) with the complementary DNA (cDNA), the cathodic peak current of MB decreased obviously. The difference of the cathodic peak currents of MB between before and after the hybridization of the probe DNA was used as the signal for the detection of the target DNA. The sequence-specific DNA of phosphinothricin acetyltransferase (PAT) gene in the transgenic plants was detected with a detection range from 1.0 × 10−10 to 1.0 × 10−6 mol/L, and a detection limit of 3.1 × 10−11 mol/L.
  • Keywords
    Zirconia , Gold nanoparticles , DNA sensor , Electrochemical detection , Phosphinothricin acetyltransferase gene
  • Journal title
    Applied Surface Science
  • Serial Year
    2008
  • Journal title
    Applied Surface Science
  • Record number

    1009230