Gold coated ferric oxide nanoparticles based disposable magnetic genosensors for the detection of DNA hybridization processes
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Loaiza, Oscar A.
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CIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, SpainCIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, Spain
Loaiza, Oscar A.
[1
]
Jubete, Elena
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CIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, SpainCIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, Spain
Jubete, Elena
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]
Ochoteco, Estibalitz
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CIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, SpainCIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, Spain
Ochoteco, Estibalitz
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]
Cabanero, German
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CIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, SpainCIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, Spain
Cabanero, German
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]
Grande, Hans
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CIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, SpainCIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, Spain
Grande, Hans
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]
Rodriguez, Javier
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CIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, SpainCIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, Spain
Rodriguez, Javier
[1
]
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[1] CIDETEC Ctr Electrochem Technol, New Mat Dept, Sensors & Photon Unit, E-20009 Donostia San Sebastian, Guipuzcoa, Spain
In this article, a disposable magnetic DNA sensor using an enzymatic amplification strategy for the detection of specific hybridization processes, based on the coupling of streptavidin-peroxidase to biotinylated target sequences, has been developed. A thiolated 19-mer capture probe was attached to gold coated ferric oxide nanoparticles and hybridization with the biotinylated target was allowed to proceed. Then, a streptavidin-peroxide was attached to the biotinylated target and the resulting modified gold coated ferric oxide nanoparticles were captured by a magnetic field on the surface of a home-made carbon screen printed electrode (SPE). Using hydroquinone as a mediator, a square wave voltammetric procedure was chosen to detect the hybridization process after the addition of hydrogen peroxide. Different aspects concerning the assay protocol and nanoparticles fabrication were optimized in order to improve the sensitivity of the developed methodology. A low detection limit (31 pM) with good stability (RSD = 7.04%, n = 10) was obtained without the need of polymerase chain reaction (PCR) amplification. (C) 2010 Elsevier B.V. All rights reserved.