Rapid, highly sensitive and highly specific gene detection by combining enzymatic amplification and DNA chip detection simultaneously
2016
Abstract We have developed a novel gene detection method based on the loop-mediated isothermal amplification (LAMP) reaction and the DNA dissociation reaction on the same DNA chip surface to achieve a lower detection limit, broader dynamic range and faster detection time than are attainable with a conventional DNA chip. Both FAM- and thiol-labeled DNA probe bound to the complementary sequence accompanying Dabcyl was immobilized on the gold surface via Au/thiol bond. The LAMP reaction was carried out on the DNA probe fixed gold surface. At first, Dabcyl molecules quenched the FAM fluorescence. According to the LAMP reaction, the complementary sequence with Dabcyl was competitively reacted with the amplified targeted sequence. As a result, the FAM fluorescence increased owing to dissociation of the complementary sequence from the DNA probe. The simultaneous reaction of LAMP and DNA chip detection was achieved, and 10 3 copies of the targeted gene were detected within an hour by measuring fluorescence intensity of the DNA probe.
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