One hundred spots parallel monitoring of DNA interactions by SPR imaging of polymer-functionalized surfaces applied to the detection of cystic fibrosis mutations
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Bassil, N
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机构:CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
Bassil, N
Maillart, E
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机构:CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
Maillart, E
Canva, M
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机构:CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
Canva, M
Lévy, Y
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机构:CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
Lévy, Y
Millot, MC
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机构:CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
Millot, MC
Pissard, S
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机构:CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
Pissard, S
Narwa, W
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机构:CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
Narwa, W
Goossens, M
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机构:CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
Goossens, M
机构:
[1] CNRS UMR 8501, Lab Charles Fabry, Inst Opt, F-91403 Orsay, France
[2] CNRS UMR C7581, Lab Rech Polymeres, F-94320 Thiais, France
[3] INSERM U468, Lab Genet Mol & Physiopathol, Hop Henri Mondor, F-94010 Creteil, France
In the present paper, we report the detection of mutations implicated in human cystic fibrosis (CF). Nine different oligonucleotides are studied, including three possible mutations related to this specific genetic disease: a deletion of three bases, DeltaF508, and two single-nucleotide polymorphisms 1540A/G and 1716G/A. We monitor, in real time and in parallel, hybridizations of a solution of unlabeled oligonucleotide targets to a matrix of 100 spots of oligonucleotide probes using surface plasmon resonance (SPR) imaging of a bio-functionalized gold slide. In order to functionalize our gold slide with the DNA probes, we have developed a self-assembled multilayer (SAM) based on electrostatic interactions and formed with 11-mercaptoundecanoic acid (MUA), poly (ethylenimine) (PEI) and ExtrAvidin layers. Probes are then linked to this SAM by the usual strong binding affinity of the avidin-biotin duplex. The 100 spots array deposited by a robot can be addressed either several times, sequentially, with the various oligonucleotide targets, or once, in parallel, with a mixture of some oligonucleotides. The specific response of our system is established along with the possibility of discriminating between a totally complementary sequence and its mutant form, even for a single base mismatch thus demonstrating the capacity of parallel diagnostic using patient like material. (C) 2003 Published by Elsevier Science B.V.