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Mechanisms of DNA Sensing on Graphene Oxide

机译:氧化石墨烯上的DNA传感机制

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Adsorption of a fluorophore-labeled DNA probe by graphene oxide (GO) produces a sensor that gives fluorescence enhancement in the presence of its complementary DNA (cDNA). While many important analytical applications have been demonstrated, it remains unclear how DNA hybridization takes place in the presence of GO, hindering further rational improvement of sensor design. For the first time, we report a set of experimental evidence to reveal a new mechanism involving nonspecific probe displacement followed by hybridization in the solution phase. In addition, we show quantitatively that only a small portion of the added cDNA molecules undergo hybridization while most are adsorbed by GO to play the displacement role. Therefore, it is possible to improve signaling by raising the hybridization efficiency. A key innovation herein is using probes and cDNA with a significant difference in their adsorption energy by GO. This study offers important mechanistic insights into the GO/DNA system. At the same time, it provides simple experimental methods to study the biomolecular reaction dynamics and mechanism on a surface, which may be applied for many other biosensor systems.
机译:氧化石墨烯(GO)吸附荧光团标记的DNA探针产生了一种传感器,该传感器在互补DNA(cDNA)存在的情况下可以增强荧光。尽管已证明了许多重要的分析应用程序,但尚不清楚在GO存在下如何进行DNA杂交,从而阻碍了传感器设计的进一步合理改进。首次,我们报告了一组实验证据,揭示了一种新的机制,涉及非特异性探针置换,然后在溶液相中进行杂交。另外,我们定量地显示了添加的cDNA分子中只有一小部分进行杂交,而大多数被GO吸附以发挥置换作用。因此,可以通过提高杂交效率来改善信令。本文的一项关键创新是使用探针和cDNA,它们的GO吸附能明显不同。这项研究为GO / DNA系统提供了重要的机械见解。同时,它提供了简单的实验方法来研究表面上的生物分子反应动力学和机理,可应用于许多其他生物传感器系统。

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