微流控
化学
核酸
纳米技术
H5N1亚型流感病毒
检出限
微流控芯片
计算生物学
聚合酶链反应
分析物
聚合酶
脱氧核酶
适体
甲型流感病毒
炸薯条
病菌
病毒
禽流感病毒
病毒学
核酸检测
传输(电信)
超短脉冲
血凝素(流感)
核酸定量
DNA
DNA提取
DNA微阵列
作者
Menghao Chai,Xiaofei Liu,J. Ping Liu,Feng Chen,Q.H. Wang,Zhengying Si,Shanshan Yu,Yichao Gan,Liping Guo,Yude Yu,Yiqiang Fan,Qiu S,Yajun Zhang,Zhao Li
标识
DOI:10.1021/acs.analchem.5c06140
摘要
Avian influenza virus (AIV) poses a global biosecurity threat, highlighting the need for rapid, accurate, and adaptable diagnostic tools to address its genetic diversity and complex transmission environments. Here, we report the development of FIGHTER, a novel ultrafast sample-to-answer microfluidic platform for the highly sensitive on-site detection of H9 and N2 genes to diagnose the H9N2 AIV subtype. The portable FIGHTER platform integrates an all-in-one plastic-aluminum membrane hybrid microfluidic chip with a dual-channel real-time PCR instrument, enabling on-site nucleic acid extraction in 5 min and reverse transcription-quantitative polymerase chain reaction with ultrafast thermal cycling in 18 min. In addition, the limit of detection of the platform is 1 copy/μL for both H9 and N2. The microfluidic chip with preloaded reagents supports simplified manual operation, and the battery-powered instrument features a user-friendly interface, allowing nonspecialists to operate it in resource-limited settings. Moreover, the validation with 60 field clinical samples showed a clinical sensitivity of 97.92% for H9 and 100% for N2, with 100% specificity for both H9 and N2. Hence, FIGHTER offers a simple, affordable, and rapid method for pathogen detection, particularly in complex environments where the conventional laboratory infrastructure is inaccessible.
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