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通过微流控环介导等温扩增和实时荧光检测实现四种呼吸道病原体的便携化和同步检测。

Portable and simultaneous detection of four respiratory pathogens through a microfluidic LAMP and real-time fluorescence assay.

机构信息

School of Public Health, Capital Medical University, Beijing 100069, China.

School of Pharmacy, China Medical University, Shenyang 110122, China.

出版信息

Analyst. 2024 Oct 7;149(20):5091-5100. doi: 10.1039/d4an00748d.

Abstract

Respiratory pathogen infections are seasonally prevalent and are likely to cause co-infections or serial infections during peak periods of infection. Since they often cause similar symptoms, simultaneous and on-site detection of respiratory pathogens is essential for accurate diagnosis and efficient treatment of these infectious diseases. However, molecular diagnostic techniques for multiple pathogens in this field are lacking. Herein, we developed a microfluidic LAMP and real-time fluorescence assay for rapid detection of multiple respiratory pathogens using a ten-channel microfluidic chip with pathogen primers pre-embedded in the chip reaction well. The microfluidic chip provided a closed reaction environment, effectively preventing aerosol contamination and improving the accuracy of the detection results. Its corresponding detection instrument could automatically collect and display the fluorescence curve in real time, which was more conducive to the interpretation of results. The results showed that the developed method could specifically recognize the nucleic acid of influenza A(H1N1), , respiratory syncytial virus type A, and SARS-CoV-2 with low detection limits of 10 copies per mL or 10 copies per mL. The test results on clinical samples demonstrated that the developed method has high sensitivity (92.00%) and high specificity (100.00%) and even has the capability to differentiate mixed-infection samples. With simple operation and high detection efficiency, the present portable and simultaneous detection assay could significantly improve the efficiency of on-site detection of respiratory infectious diseases and promote the accurate treatment, efficient prevention and control of the diseases.

摘要

呼吸道病原体感染具有季节性流行特征,在感染高峰期很可能会引起合并感染或连续感染。由于它们通常会引起类似的症状,因此同时进行现场检测对于准确诊断和有效治疗这些传染病至关重要。然而,该领域针对多种病原体的分子诊断技术却存在不足。在此,我们开发了一种微流控环介导等温扩增(LAMP)和实时荧光检测方法,通过在微流控芯片的反应孔中预先嵌入病原体引物,利用十通道微流控芯片可快速检测多种呼吸道病原体。微流控芯片提供了一个封闭的反应环境,能有效防止气溶胶污染,提高检测结果的准确性。其配套的检测仪器可以自动实时采集并显示荧光曲线,更有利于结果的解读。结果表明,该方法能够特异性识别甲型流感(H1N1)、呼吸道合胞病毒 A 型和 SARS-CoV-2 的核酸,其检测下限低至 10 拷贝/毫升或 10 拷贝/毫升。对临床样本的测试结果表明,该方法具有较高的灵敏度(92.00%)和特异性(100.00%),甚至能够区分混合感染样本。本研究开发的便携式同步检测方法操作简单、检测效率高,有望显著提高呼吸道传染病现场检测的效率,促进疾病的准确治疗、有效防控。

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