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- W3083095246 abstract "A new electrochemical biosensor for sensitive detection of telomerase activity based on the hybridization chain reaction and the dual interaction of the poly-adenine (polyA) DNA with Au electrode and Ce-Ti dioxide nanorods (Ce-Ti NRs) has been constructed. Deoxynucleotide triphosphates (dNTPs) can be incorporated at the 3´-OH of TS primer by telomerase to generate the extension products with telomeric repeats (TTAGGG)n (TEP), which can hybridize with hairpin (HP) DNA and open it to form a duplex DNA with a short poly-adenine DNA single-stranded tail (s1). The duplex DNA can be recognized and selectively cleaved into single-stranded DNA fragment s1 and TEP by exonuclease III (Exo III). The released TEP can then hybridize with the HP again to initiate the s1 recycling process, which will result in the massive release of s1 fragments from HP. The s1 fragments can be immobilized on the Au electrode surface through the interaction between polyA and Au electrode on one hand. On the other hand, Ce-Ti NRs can be adsorbed on the Au electrode surface by the interaction between Ce-Ti NRs and the phosphate groups of s1, resulting in the decrease of the differential pulse voltammetry (DPV) current of the redox probe. The higher activity of telomerase, more HP can be hybridized and cleaved, more poly-adenine and Ce-Ti NRs can be immobilized on electrode surface, and remarkable decrease of the DPV signal can be observed. The biosensor exhibited good sensitivity toward telomerase activity in HeLa cells." @default.
- W3083095246 created "2020-09-11" @default.
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- W3083095246 date "2020-11-01" @default.
- W3083095246 modified "2023-10-15" @default.
- W3083095246 title "Electrochemical biosensor for telomerase activity assay based on HCR and dual interaction of the poly-adenine DNA with Au electrode and Ce-Ti dioxide nanorods" @default.
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- W3083095246 doi "https://doi.org/10.1016/j.jelechem.2020.114633" @default.
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