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Conjugation polymer nanobelts: a novel fluorescent sensing platform for nucleic acid detection†

机译:共轭聚合物纳米带:用于核酸检测的新型荧光传感平台†

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摘要

In this article, we report on the facile and rapid synthesis of conjugation polymer poly(p-phenylenediamine) nanobelts (PNs) via room temperature chemical oxidation polymerization of p-phenylenediamine monomers by ammonium persulfate in aqueous medium. We further demonstrate the proof-of-concept that PNs can be used as an effective fluorescent sensing platform for nucleic acid detection for the first time. The general concept used in this approach lies in the facts that the adsorption of the fluorescently labeled single-stranded DNA probe by PN leads to substantial fluorescence quenching, followed by specific hybridization with the complementary region of the target DNA sequence. This results in desorption of the hybridized complex from PN surface and subsequent recovery of fluorescence. We also show that the sensing platform described herein can be used for multiplexing detection of nucleic acid sequences.
机译:在本文中,我们报告了过硫酸铵在水介质中通过对苯二胺单体的室温化学氧化聚合反应,可轻松快速地合成共轭聚合物聚对苯二胺纳米带(PNs)。我们进一步证明了PN首次可以用作核酸检测的有效荧光传感平台的概念证明。该方法中使用的一般概念在于以下事实:PN对荧光标记的单链DNA探针的吸附会导致大量的荧光猝灭,然后与目标DNA序列的互补区域发生特异性杂交。这导致杂交的复合物从PN表面解吸并随后恢复荧光。我们还表明,本文所述的感测平台可用于核酸序列的多重检测。

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