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Rapid and reliable diagnostic method to detect Zika virus by real-time fluorescence reverse transcription loop-mediated isothermal amplification

机译:实时荧光逆转录环介导的等温扩增检测寨卡病毒的快速可靠诊断方法

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摘要

To detect Zika virus more rapidly and accurately, we developed a novel method that utilized a real-time fluorescence reverse transcription loop-mediated isothermal amplification (LAMP) technique. The NS5 gene was amplified by a set of six specific primers that recognized six distinct sequences. The amplification process, including 60 min of thermostatic reaction with Bst DNA polymerase following real-time fluorescence reverse transcriptase using genomic Zika virus standard strain (MR766), was conducted through fluorescent signaling. Among the six pairs of primers that we designate here, NS5 was the most efficient with a high sensitivity of up to 3.3 ng/μl and reproducible specificity on eight pathogen samples that were used as negative controls. The real-time fluorescence reverse transcription LAMP detection process can be completed within 35 min. Our study demonstrated that real-time fluorescence reverse transcription LAMP could be highly beneficial and convenient clinical application to detect Zika virus due to its high specificity and stability.
机译:为了更快速,准确地检测寨卡病毒,我们开发了一种利用实时荧光逆转录环介导的等温扩增(LAMP)技术的新方法。通过识别六种不同序列的六种特异性引物对NS5基因进行扩增。通过基因信号Zika病毒标准菌株(MR766)进行实时荧光逆转录酶扩增,包括与Bst DNA聚合酶进行60分钟恒温反应的扩增过程。在我们在此指定的六对引物中,NS5是最有效的,灵敏度高达3.3 ng /μl,并且对用作阴性对照的八种病原体样品具有可重复的特异性。实时荧光逆转录LAMP检测过程可在35分钟内完成。我们的研究表明,实时荧光逆转录LAMP具有很高的特异性和稳定性,对检测寨卡病毒具有很高的实用价值。

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