化学
量子点
检出限
生物传感器
反式激活crRNA
纳米技术
信号(编程语言)
核糖核酸
病毒
计算生物学
甲型流感病毒
适应性
病菌
病毒感染
探测器
病毒学
探测理论
纳米颗粒
极限(数学)
小发夹RNA
人类健康
催化作用
放射性检测
作者
Yeling Yang,Ying Liu,Hui Xu,Fuxiang Zhou,Xinghu Ji,Zhike He
标识
DOI:10.1021/acs.analchem.5c08146
摘要
Influenza A (H1N1), which is a highly contagious respiratory pathogen, poses a serious public health threat. Its effective control necessitates rapid and accurate detection methods. Here, we developed a novel quantum dot (QDs) nanobeacon-based biosensor that synergistically integrates the precise target recognition and trans-cleavage activity of CRISPR/Cas13a with the isothermal, enzyme-free signal amplification power of catalytic hairpin assembly (CHA) for sensitive detection of H1N1 RNA. This system achieves dual signal amplification, enabling detection with a remarkably low limit of detection (LOD) of 95.2 aM within 40 min. Excellent specificity distinguishes H1N1 from other common influenza viruses. Crucially, the programmability of crRNA endows the method with broad versatility. Beyond influenza virus detection, it was successfully applied to SARS-CoV-2 RNA detection, achieving an LOD of 87.0 aM, demonstrating its potential for diverse pathogen diagnostics. These results collectively demonstrate the high performance and adaptability of this diagnostic platform, highlighting its significant promise for future applications in the rapid and sensitive detection of diverse viral pathogens.
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