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Hybridization-based unquenching of DNA hairpins on au surfaces: prototypical "molecular beacon" biosensors
Hui Du1, Matthew D Disney, Benjamin L Miller
1Department of Chemistry, and The Center for Future Health, University of Rochester, Rochester, New York 14627, USA.
Abstract:
There is a keen interest in developing techniques for rapid genetic analysis that do not require labeling of an analyte. Here we demonstrate that fluorophore-tagged DNA hairpins attached to gold films can function as immobilized "molecular beacons". Two DNA hairpins incorporating portions of the Staphlococcus aureus FemA and mecR methicillin-resistance genes were attached to a gold substrate. Upon exposure to the complement, a approximately 26-fold increase in fluorescence intensity was measured corresponding to a 96 +/- 5% quenching efficiency. Studies with nonspecific DNA indicate that DNA hairpins immobilized on a gold surface retain their ability to bind complementary DNA sequences selectively.
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