Ge Yiyue, Zhou Qiang, Zhao Kangchen, Chi Ying, Liu Bin, Min Xiaoyan, Shi Zhiyang, Zou Bingjie, Cui Lunbiao
Institute of Pathogenic Microbiology, Key Laboratories of Enteric Pathogenic Microbiology (Ministry of Health), Jiangsu Provincial Center for Disease Control and Prevention.
Department of Pharmacology, Jinling Hospital, Medical School of Nanjing University.
Int J Nanomedicine. 2017 Apr 3;12:2645-2656. doi: 10.2147/IJN.S132670. eCollection 2017.
Influenza virus infections represent a worldwide public health and economic problem due to the significant morbidity and mortality caused by seasonal epidemics and pandemics. Sensitive and convenient methodologies for detection of influenza viruses are essential for further disease control. Loop-mediated isothermal amplification (LAMP) is the most commonly used method of nucleic acid isothermal amplification. However, with regard to multiplex LAMP, differentiating the ladder-like LAMP products derived from multiple targets is still challenging today. The requirement of specialized instruments has further hindered the on-site application of multiplex LAMP. We have developed an integrated assay coupling multiplex reverse transcription LAMP with cascade invasive reaction using nanoparticles (mRT-LAMP-CIRN) as a sensor for the detection of three subtypes of influenza viruses: A/H1N1pdm09, A/H3 and influenza B. The analytic sensitivities of the mRT-LAMP-CIRN assay were 10 copies of RNA for both A/H1N1pdm09 and A/H3, and 10 copies of RNA for influenza B. This assay demonstrated highly specific detection of target viruses and could differentiate them from other genetically or clinically related viruses. Clinical specimen analysis showed the mRT-LAMP-CIRN assay had an overall sensitivity and specificity of 98.3% and 100%, respectively. In summary, the mRT-LAMP-CIRN assay is highly sensitive and specific, and can be used as a cost-saving and instrument-free method for the detection of influenza viruses, especially for on-site use.
由于季节性流行和大流行导致的高发病率和死亡率,流感病毒感染是一个全球性的公共卫生和经济问题。灵敏便捷的流感病毒检测方法对于进一步控制疾病至关重要。环介导等温扩增技术(LAMP)是最常用的核酸等温扩增方法。然而,对于多重LAMP而言,区分来自多个靶标的阶梯状LAMP产物在当今仍然具有挑战性。对专用仪器的需求进一步阻碍了多重LAMP的现场应用。我们开发了一种集成检测方法,将多重逆转录LAMP与基于纳米颗粒的级联侵入反应(mRT-LAMP-CIRN)相结合,作为检测三种流感病毒亚型的传感器:甲型H1N1pdm09、甲型H3和乙型流感病毒。mRT-LAMP-CIRN检测方法对甲型H1N1pdm09和甲型H3的分析灵敏度均为10个RNA拷贝,对乙型流感病毒的分析灵敏度为10个RNA拷贝。该检测方法对目标病毒具有高度特异性检测能力,能够将它们与其他基因或临床相关病毒区分开来。临床标本分析表明,mRT-LAMP-CIRN检测方法的总体灵敏度和特异性分别为98.3%和100%。综上所述,mRT-LAMP-CIRN检测方法具有高灵敏度和特异性,可作为一种经济节约且无需仪器的流感病毒检测方法,尤其适用于现场使用。