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Electrochemical real-time DNA amplification and detection on a microchip

机译:微芯片电化学实时DNA扩增和检测

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In this work, we demonstrate the implementation of a recently developed electrochemical real-time polymerase chain reaction technique on a silicon microchip for simultaneous DNA amplification and detection. The real-time DNA amplification relies on an electroactive DNA intercalator, methylene blue (MB), for electrochemical signal measurements. Compared to other existing electrochemical methods for DNA amplicon analysis, our electrochemical detection method is more advantageous for no requiring probe-modified electrodes, or asymmetric PCR, or solide-phase PCR. Our reaction microchips provide micro PCR environment to promote the efficiency of DNA amplification since the reaction in the microchip wells cost low-volume solution (10μL) and rapid amplification time. In this study, we demonstrate the electrochemical relationship of MB and PCR amplicons with PCR cycles increase by amplifying a fragment of white spot syndrome virus (WSSV) genome DNA. The results of this study prove that the real-time DNA reaction microchip has a great convenience for the rapid, user-friendly, and low-volume real-time PCR assays in the direct detection of WSSV diagnosis.
机译:在这项工作中,我们证明了在硅微芯片上的最近开发的电化学实时聚合酶链反应技术的实现,以进行同时DNA扩增和检测。实时DNA扩增依赖于电活性DNA嵌入剂,亚甲基蓝(MB),用于电化学信号测量。与其他现有的DNA扩增子分析的电化学方法相比,我们的电化学检测方法对于不需要探针改性电极或不对称PCR或溶酶-相PCR更有利。我们的反应微芯片提供微量PCR环境,以促进DNA扩增的效率,因为微芯片井中的反应成本低体积溶液(10μL)和快速放大时间。在这项研究中,我们通过扩增白斑综合征病毒(WSSV)基因组DNA的片段来展示MB和PCR扩增子与PCR循环的电化学关系。该研究的结果证明,实时DNA反应微芯片对快速,用户友好和低批量实时PCR测定具有极大的便利性,直接检测WSSV诊断。

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