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Label-free and sensitive fluorescence detection of nucleic acid, based on combination of a graphene oxid /SYBR green I dye platform and polymerase assisted signal amplification

机译:基于石墨烯氧化物/ SYBR green I染料平台和聚合酶辅助信号放大的组合,对核酸进行无标记的灵敏荧光检测

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摘要

A new label-free isothermal fluorescence amplification detection for nucleic acid has been developed. In this paper, we first developed a novel sensitive and specific detection platform with an unmodified hairpin probe (HP) combination of the graphene oxid (GO)/ SYBR green I dye (SG), which was relied on the selective principle of adsorption and the high quenching efficiency of GO. Then for the application of this new strategy, we used Mirco RNA-21 (Mir-21) as the target to evaluate this working principle of our design. When the target was hybridizing with the HP and inducing its conformation of change, an efficient isothermal circular strand-displacement polymerization reaction was activating to assist the first signal amplification. In this format, the formed complex conformation of DNA would interact with its high affinity dye, then detached from the surface of GO after incubating with the platform of GO/intercalating dye. This reaction would accompany with obvious fluorescence recovery, and accomplish farther signal enhancement by a mass of intercalating dye inserting into the minor groove of the long duplex replication product. By taking advantage of the multiple amplification of signal, this method exerted substantial enhancement in sensitivity and could be used for rapid and selective detection of Mir-21 with attomole range. It is expected that this cost-effective GO based sensor might hold considerable potential to apply in bioanalysis studies.
机译:已经开发了一种新的无标记的等温核酸荧光扩增检测方法。在本文中,我们首先开发了一种新颖且灵敏的特异性检测平台,该平台基于石墨烯氧化物(GO)/ SYBR green I染料(SG)的未修饰发夹探针(HP)组合,这是基于吸附的选择性原理和GO的淬火效率高。然后,对于这一新策略的应用,我们使用Mirco RNA-21(Mir-21)作为目标来评估我们设计的这一工作原理。当靶标与HP杂交并诱导其变化构象时,有效的等温环状链置换聚合反应正在激活,以辅助第一信号放大。以这种格式,DNA形成的复杂构象将与其高亲和力染料相互作用,然后在与GO /嵌入染料平台孵育后从GO表面脱离。该反应将伴随明显的荧光恢复,并通过将大量嵌入染料插入长双链体复制产物的小沟中来实现进一步的信号增强。通过利用信号的多重放大,该方法显着提高了灵敏度,可用于快速和选择性地检测具有attomole范围的Mir-21。可以预期,这种具有成本效益的基于GO的传感器可能具有在生物分析研究中应用的巨大潜力。

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