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Spotlighting of cocaine by an autonomous aptamer-based machine

  • Bella Shlyahovsky
  • , Di Li
  • , Yossi Weizmann
  • , Roni Nowarski
  • , Moshe Kotler
  • , Itamar Willner*
  • *此作品的通讯作者
  • Hebrew University of Jerusalem

科研成果: 期刊稿件文章同行评审

摘要

An aptamer-based machine is used for the amplified detection of the low-molecular-weight analyte, cocaine. The aptamer sequence recognizing cocaine, 1, is blocked to an inactive structure through its hybridization with 1a. In the presence of cocaine, 2, the blocked aptamer is folded to form the cocaine-aptamer complex 3, while releasing 1a. In the presence of the nucleotide mixture, dNTPs, polymerase, and the nicking enzyme Nt.BbvC I, a polymerization-nicking and strand displacement is initiated on the cocaine-aptamer complex that acts as "track". The displaced strand 4 hybridizes with a hairpin nucleic structure 5 that is functionalized at the two ends of the "stem" by a dye (FAM)/quencher (TAMRA) couple. The fluorescence of the dye is quenched by TAMRA in the "hairpin" structure. The opening of the "hairpin" structure through hybridization with 4 restores the fluorescence of the dye (λex = 480 nm; λem = 520 nm). The resulting fluorescence signal provides a readout signal for the operation of the aptamer-based machine and for the detection of cocaine. The system enabled the analysis of cocaine with a detection limit that corresponded to 5 × 10-6 M.

源语言英语
页(从-至)3814-3815
页数2
期刊Journal of the American Chemical Society
129
13
DOI
出版状态已出版 - 4 4月 2007
已对外发布

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