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首页> 外文期刊>Bulletin of the Korean Chemical Society >Sensitivity Control of Label-free DNA Hybridization Detection Based on Poly(thionine)-Modified Glassy Carbon and Gold Electrodes
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Sensitivity Control of Label-free DNA Hybridization Detection Based on Poly(thionine)-Modified Glassy Carbon and Gold Electrodes

机译:基于聚(噻嗪)制水合玻碳和金电极的无标记DNA杂交检测灵敏度控制

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摘要

Poly(thionine) (PTH)-modified glassy carbon (PTH-S/GCE and PTH-D/GCE) and gold (PTH-S/Au) electrodes were prepared for the label-free detection of DNA hybridizations and their performances in terms of sensitivity and selectivity were compared. Single-strand probe DNA (pDNA) was immobilized on the PTH films via covalent bonding between the amine (-NH2) group of PTH and the phosphate (PO43-) group at the 5' end of the pDNA. The PTH oxidation current was decreased because of the increase in the stiffness of PTH films. The current was further decreased after the duplex was formed by the hybridization of the target complementary DNA (cDNA). The pDNA/PTH-S/GCE, pDNA/PTH-D/GCE, and pDNA/PTH-S/Au sensors showed excellent sensitivities of ca. 2.1, 55, and 1.9 mu A/cm(2)/nM, respectively, and the detection limits (S/N = 3) were ca. 40.6, 1.5, and 45 pM, respectively, for the hybridization of target cDNA.
机译:为无标记检测DNA杂交和表现,制备聚(噻吩)(PTH)制水合玻璃(Pth-S / GCE和Pth-D / GCE)和金(Pth-S / Au)电极。 比较灵敏度和选择性。 通过在PDNA的5'末端的胺(-NH2)的PTH和磷酸盐(PO43-)基团之间的共价键合,将单链探针DNA(PDNA)固定在PTH膜上。 由于PTH薄膜刚度的增加,PTH氧化电流降低。 通过靶互补DNA(cDNA)的杂交形成双链体后进一步降低电流。 PDNA / PTH-S / GCE,PDNA / PTH-D / GCE和PDNA / PTH-S / AU传感器显示出CA的优异敏感性。 2.1,55和1.9μA/ cm(2)/ nm分别,检测限制(S / N = 3)是CA。 分别为靶cDNA的杂交40.6,1.5和45%。

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