• Title of article

    Quantum dot nanocrystals having guanosine imprinted nanoshell for DNA recognition

  • Author/Authors

    Diltemiz، نويسنده , , Sibel Emir and Say، نويسنده , , R?dvan and Büyüktiryaki، نويسنده , , Sibel and Hür، نويسنده , , Deniz and Denizli، نويسنده , , Adil and Ers?z، نويسنده , , Arzu، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2008
  • Pages
    7
  • From page
    890
  • To page
    896
  • Abstract
    Molecular imprinted polymers (MIPs) as a recognition element for sensors are increasingly of interest and MIP nanoparticles have started to appear in the literature. In this study, we have proposed a novel thiol ligand-capping method with polymerizable methacryloylamido-cysteine (MAC) attached to CdS quantum dots (QDs), reminiscent of a self-assembled monolayer and have reconstructed surface shell by synthetic host polymers based on molecular imprinting method for DNA recognition. In this method, methacryloylamidohistidine-platinium (MAH-Pt(II)) is used as a new metal-chelating monomer via metal coordination-chelation interactions and guanosine templates of DNA. Nanoshell sensors with guanosine templates give a cavity that is selective for guanosine and its analogues. The guanosine can simultaneously chelate to Pt(II) metal ion and fit into the shape-selective cavity. Thus, the interaction between Pt(II) ion and free coordination spheres has an effect on the binding ability of the CdS QD nanosensor. The binding affinity of the guanosine imprinted nanocrystals has investigated by using the Langmuir and Scatchard methods, and experiments have shown the shape-selective cavity formation with O6 and N7 of a guanosine nucleotide (Ka = 4.841 × 106 mol L−1) and a free guanine base (Ka = 0.894 × 106 mol L−1). Additionally, the guanosine template of the nanocrystals is more favored for single stranded DNA compared to double stranded DNA.
  • Keywords
    Photoluminescence , Deoxtribo nucleic acid (DNA) recognition , Quantum dots , Nanoshell sensor , Molecularly imprinted polymers
  • Journal title
    Talanta
  • Serial Year
    2008
  • Journal title
    Talanta
  • Record number

    1654787