| Literature DB >> 24379042 |
Noorsharmimi Omar1, Qiuting Loh2, Gee Jun Tye3, Yee Siew Choong4, Rahmah Noordin5, Jörn Glökler6, Theam Soon Lim7.
Abstract
G-Quadruplex (G-4) structures are formed when G-rich DNA sequences fold into intra- or intermolecular four-stranded structures in the presence of metal ions. G-4-hemin complexes are often effective peroxidase-mimicking DNAzymes that are applied in many detection systems. This work reports the application of a G-rich daunomycin-specific aptamer for the development of an antibody-antigen detection assay. We investigated the ability of the daunomycin aptamer to efficiently catalyze the hemin-dependent peroxidase activity independent of daunomycin. A reporter probe consisting of biotinylated antigen and daunomycin aptamer coupled to streptavidin gold nanoparticles was successfully used to generate a colorimetric readout. In conclusion, the daunomycin aptamer can function as a robust alternative DNAzyme for the development of colorimetric assays.Entities:
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Year: 2013 PMID: 24379042 PMCID: PMC3926560 DOI: 10.3390/s140100346
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1.Schematic diagram of STV-AuNPs and Ag-Ab/DNAzyme conjugation as probe (A) for immunoassay system (B).
Figure 2.Analysis of antigen-DNAzyme probe based assay. (A) pre-ABTS reaction; (B) post-ABTS reaction; (C) absorbance reading of DNAzyme probes. 200 μg of bio-eGFP was added for each tube with the variations of 30, 40 and 50 μM of bio-DQ added to tubes 1–3, respectively. Two hundred μL ABTS solution added for each reaction and readout was taken at 405 nm. Absorbance readouts were represented in bar chart after 30 min ABTS reaction.
Figure 3.Absorbance analysis of the probe based direct assay for antibody antigen reaction. Reaction time was 30 min with ABTS (1 μg/mL) and H2O2 (2.2 mM). Bar chart expressed as the average of three independent measurements (n = 3).
Figure 4.Competitive assay between the probe and the free eGFP against the antibody (scFv format). Linear relationship between the absorbance readout and the concentration of free eGFP (n = 3) where each data point represents an average of three absorbance readouts (each error bar indicates the standard errors).