首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Semi-real time electrochemical monitoring for influenza virus RNA by reverse transcription loop-mediated isothermal amplification using a USB powered portable potentiostat
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Semi-real time electrochemical monitoring for influenza virus RNA by reverse transcription loop-mediated isothermal amplification using a USB powered portable potentiostat

机译:使用USB供电的便携式恒电位仪通过逆转录环介导的等温扩增对流感病毒RNA进行半实时电化学监测

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In this paper, the semi-real time electrochemical monitoring method using a screen-printed electrode, which employs reverse transcription loop-mediated isothermal amplification (RT-LAMP) for influenza virus RNA, is presented. The amplified DNA combined with methylene blue (MB), which was used as an electroactive DNA intercalator, and the electrochemical signal was monitored using square wave voltammetry in the presence of RT-LAMP reagent components. MB molecules binding to amplified DNA caused the reduction of the peak current due to the slow diffusion of MB-amplified DNA complex to the electrode surface. We successfully monitored the amplification process of DNA on the basis of RT-LAMP by measuring and analyzing the electrochemical signal of MB with only one screen-printed electrode that connected with a USB powered portable potentiostat. The peak height of the current was related to the extent of amplification of DNA and the amount of input RNA. Since laborious probe immobilization is not required and both the amplification and the monitoring are possible in a single tube, our method does not suffer from potential cross-contamination. Furthermore, our method provides a new rote for the development of electrochemical hand held biosensors. This journal is
机译:本文提出了一种使用丝网印刷电极的半实时电化学监测方法,该方法采用逆转录环介导的等温扩增(RT-LAMP)技术检测流感病毒RNA。扩增的DNA与用作电活性DNA嵌入剂的亚甲基蓝(MB)结合,并在RT-LAMP试剂组分存在下,使用方波伏安法监测电化学信号。 MB分子与扩增的DNA结合导致峰电流降低,这是因为MB扩增的DNA复合物缓慢扩散到电极表面。我们仅通过一根丝网印刷的电极与USB供电的便携式恒电位仪连接,即可测量和分析MB的电化学信号,从而在RT-LAMP的基础上成功地监测了DNA的扩增过程。电流的峰值高度与DNA的扩增程度和输入的RNA量有关。由于不需要费力的探针固定,并且在单个试管中都可以进行扩增和监测,因此我们的方法不会遭受潜在的交叉污染。此外,我们的方法为电化学手持式生物传感器的开发提供了新的死记硬背。这本日记是

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